TY - JOUR A1 - Fernàndez-Castillo, Noèlia A1 - Cabana-Domínguez, Judit A1 - Kappel, Djenifer B. A1 - Torrico, Bàrbara A1 - Weber, Heike A1 - Lesch, Klaus-Peter A1 - Lao, Oscar A1 - Reif, Andreas A1 - Cormand, Bru T1 - Exploring the contribution to ADHD of genes involved in Mendelian disorders presenting with hyperactivity and/or inattention JF - Genes N2 - Attention-deficit hyperactivity disorder (ADHD) is a complex neurodevelopmental disorder characterized by hyperactivity, impulsivity, and/or inattention, which are symptoms also observed in many rare genetic disorders. We searched for genes involved in Mendelian disorders presenting with ADHD symptoms in the Online Mendelian Inheritance in Man (OMIM) database, to curate a list of new candidate risk genes for ADHD. We explored the enrichment of functions and pathways in this gene list, and tested whether rare or common variants in these genes are associated with ADHD or with its comorbidities. We identified 139 genes, causal for 137 rare disorders, mainly related to neurodevelopmental and brain function. Most of these Mendelian disorders also present with other psychiatric traits that are often comorbid with ADHD. Using whole exome sequencing (WES) data from 668 ADHD cases, we found rare variants associated with the dimension of the severity of inattention symptoms in three genes: KIF11, WAC, and CRBN. Then, we focused on common variants and identified six genes associated with ADHD (in 19,099 cases and 34,194 controls): MANBA, UQCC2, HIVEP2, FOPX1, KANSL1, and AUH. Furthermore, HIVEP2, FOXP1, and KANSL1 were nominally associated with autism spectrum disorder (ASD) (18,382 cases and 27,969 controls), as well as HIVEP2 with anxiety (7016 cases and 14,475 controls), and FOXP1 with aggression (18,988 individuals), which is in line with the symptomatology of the rare disorders they are responsible for. In conclusion, inspecting Mendelian disorders and the genes responsible for them constitutes a valuable approach for identifying new risk genes and the mechanisms of complex disorders. KW - ADHD KW - rare mendelian disorders KW - genetic variants Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-252346 SN - 2073-4425 VL - 13 IS - 1 ER - TY - JOUR A1 - Palladino, Viola Stella A1 - Chiocchetti, Andreas G. A1 - Frank, Lukas A1 - Haslinger, Denise A1 - McNeill, Rhiannon A1 - Radtke, Franziska A1 - Till, Andreas A1 - Haupt, Simone A1 - Brüstle, Oliver A1 - Günther, Katharina A1 - Edenhofer, Frank A1 - Hoffmann, Per A1 - Reif, Andreas A1 - Kittel-Schneider, Sarah T1 - Energy metabolism disturbances in cell models of PARK2 CNV carriers with ADHD JF - Journal of Clinical Medicine N2 - The main goal of the present study was the identification of cellular phenotypes in attention-deficit-/hyperactivity disorder (ADHD) patient-derived cellular models from carriers of rare copy number variants (CNVs) in the PARK2 locus that have been previously associated with ADHD. Human-derived fibroblasts (HDF) were cultured and human-induced pluripotent stem cells (hiPSC) were reprogrammed and differentiated into dopaminergic neuronal cells (mDANs). A series of assays in baseline condition and in different stress paradigms (nutrient deprivation, carbonyl cyanide m-chlorophenyl hydrazine (CCCP)) focusing on mitochondrial function and energy metabolism (ATP production, basal oxygen consumption rates, reactive oxygen species (ROS) abundance) were performed and changes in mitochondrial network morphology evaluated. We found changes in PARK2 CNV deletion and duplication carriers with ADHD in PARK2 gene and protein expression, ATP production and basal oxygen consumption rates compared to healthy and ADHD wildtype control cell lines, partly differing between HDF and mDANs and to some extent enhanced in stress paradigms. The generation of ROS was not influenced by the genotype. Our preliminary work suggests an energy impairment in HDF and mDAN cells of PARK2 CNV deletion and duplication carriers with ADHD. The energy impairment could be associated with the role of PARK2 dysregulation in mitochondrial dynamics. KW - ADHD KW - hiPSC KW - PARK2 KW - mitochondria KW - disease modelling Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-220074 SN - 2077-0383 VL - 9 IS - 12 ER - TY - JOUR A1 - Baader, Anna A1 - Kiani, Behnaz A1 - Brunkhorst-Kanaan, Nathalie A1 - Kittel-Schneider, Sarah A1 - Reif, Andreas A1 - Grimm, Oliver T1 - A within-sample comparison of two innovative neuropsychological tests for assessing ADHD JF - Brain Sciences N2 - New innovative neuropsychological tests in attention deficit hyperactivity disorder ADHD have been proposed as objective measures for diagnosis and therapy. The current study aims to investigate two different commercial continuous performance tests (CPT) in a head-to-head comparison regarding their comparability and their link with clinical parameters. The CPTs were evaluated in a clinical sample of 29 adult patients presenting in an ADHD outpatient clinic. Correlational analyses were performed between neuropsychological data, clinical rating scales, and a personality-based measure. Though inattention was found to positively correlate between the two tests (r = 0.49, p = 0.01), no association with clinical measures and inattention was found for both tests. While hyperactivity did not correlate between both tests, current ADHD symptoms were positively associated with Nesplora Aquarium's motor activity (r = 0.52 to 0.61, p < 0.05) and the Qb-Test's hyperactivity (r = 0.52 to 0.71, p < 0.05). Conclusively, the overall comparability of the tests was limited and correlation with clinical parameters was low. While our study shows some interesting correlation between clinical symptoms and sub-scales of these tests, usage in clinical practice is not recommended. KW - ADHD KW - neuropsychology KW - continuous performance test KW - Qb-Test KW - Nesplora Aquarium KW - attention KW - hyperactivity KW - GHQ-28 KW - UPPS KW - impulsivity Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-220089 SN - 2076-3425 VL - 11 IS - 1 ER - TY - JOUR A1 - Ziegler, Georg C. A1 - Ehlis, Ann-Christine A1 - Weber, Heike A1 - Vitale, Maria Rosaria A1 - Zöller, Johanna E. M. A1 - Ku, Hsing-Ping A1 - Schiele, Miriam A. A1 - Kürbitz, Laura I. A1 - Romanos, Marcel A1 - Pauli, Paul A1 - Kalisch, Raffael A1 - Zwanzger, Peter A1 - Domschke, Katharina A1 - Fallgatter, Andreas J. A1 - Reif, Andreas A1 - Lesch, Klaus-Peter T1 - A Common CDH13 Variant is Associated with Low Agreeableness and Neural Responses to Working Memory Tasks in ADHD JF - Genes N2 - The cell—cell signaling gene CDH13 is associated with a wide spectrum of neuropsychiatric disorders, including attention-deficit/hyperactivity disorder (ADHD), autism, and major depression. CDH13 regulates axonal outgrowth and synapse formation, substantiating its relevance for neurodevelopmental processes. Several studies support the influence of CDH13 on personality traits, behavior, and executive functions. However, evidence for functional effects of common gene variation in the CDH13 gene in humans is sparse. Therefore, we tested for association of a functional intronic CDH13 SNP rs2199430 with ADHD in a sample of 998 adult patients and 884 healthy controls. The Big Five personality traits were assessed by the NEO-PI-R questionnaire. Assuming that altered neural correlates of working memory and cognitive response inhibition show genotype-dependent alterations, task performance and electroencephalographic event-related potentials were measured by n-back and continuous performance (Go/NoGo) tasks. The rs2199430 genotype was not associated with adult ADHD on the categorical diagnosis level. However, rs2199430 was significantly associated with agreeableness, with minor G allele homozygotes scoring lower than A allele carriers. Whereas task performance was not affected by genotype, a significant heterosis effect limited to the ADHD group was identified for the n-back task. Heterozygotes (AG) exhibited significantly higher N200 amplitudes during both the 1-back and 2-back condition in the central electrode position Cz. Consequently, the common genetic variation of CDH13 is associated with personality traits and impacts neural processing during working memory tasks. Thus, CDH13 might contribute to symptomatic core dysfunctions of social and cognitive impairment in ADHD. KW - ADHD KW - CDH13 KW - neurodevelopment KW - executive functions KW - working memory KW - Big Five KW - agreeableness Y1 - 2021 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-245220 SN - 2073-4425 VL - 12 IS - 9 ER - TY - JOUR A1 - Biere, Silvia A1 - Kranz, Thorsten M. A1 - Matura, Silke A1 - Petrova, Kristiyana A1 - Streit, Fabian A1 - Chiocchetti, Andreas G. A1 - Grimm, Oliver A1 - Brum, Murielle A1 - Brunkhorst-Kanaan, Natalie A1 - Oertel, Viola A1 - Malyshau, Aliaksandr A1 - Pfennig, Andrea A1 - Bauer, Michael A1 - Schulze, Thomas G. A1 - Kittel-Schneider, Sarah A1 - Reif, Andreas T1 - Risk Stratification for Bipolar Disorder Using Polygenic Risk Scores Among Young High-Risk Adults JF - Frontiers in Psychiatry N2 - Objective: Identifying high-risk groups with an increased genetic liability for bipolar disorder (BD) will provide insights into the etiology of BD and contribute to early detection of BD. We used the BD polygenic risk score (PRS) derived from BD genome-wide association studies (GWAS) to explore how such genetic risk manifests in young, high-risk adults. We postulated that BD-PRS would be associated with risk factors for BD. Methods: A final sample of 185 young, high-risk German adults (aged 18–35 years) were grouped into three risk groups and compared to a healthy control group (n = 1,100). The risk groups comprised 117 cases with attention deficit hyperactivity disorder (ADHD), 45 with major depressive disorder (MDD), and 23 help-seeking adults with early recognition symptoms [ER: positive family history for BD, (sub)threshold affective symptomatology and/or mood swings, sleeping disorder]. BD-PRS was computed for each participant. Logistic regression models (controlling for sex, age, and the first five ancestry principal components) were used to assess associations of BD-PRS and the high-risk phenotypes. Results: We observed an association between BD-PRS and combined risk group status (OR = 1.48, p < 0.001), ADHD diagnosis (OR = 1.32, p = 0.009), MDD diagnosis (OR = 1.96, p < 0.001), and ER group status (OR = 1.7, p = 0.025; not significant after correction for multiple testing) compared to healthy controls. Conclusions: In the present study, increased genetic risk for BD was a significant predictor for MDD and ADHD status, but not for ER. These findings support an underlying shared risk for both MDD and BD as well as ADHD and BD. Improving our understanding of the underlying genetic architecture of these phenotypes may aid in early identification and risk stratification. KW - polygenic risk score KW - bipolar disorder KW - genetic phenotypes KW - depression KW - ADHD KW - early recognition Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-214976 VL - 11 ER - TY - JOUR A1 - McNeill, Rhiannon V. A1 - Ziegler, Georg C. A1 - Radtke, Franziska A1 - Nieberler, Matthias A1 - Lesch, Klaus‑Peter A1 - Kittel‑Schneider, Sarah T1 - Mental health dished up — the use of iPSC models in neuropsychiatric research JF - Journal of Neural Transmission N2 - Genetic and molecular mechanisms that play a causal role in mental illnesses are challenging to elucidate, particularly as there is a lack of relevant in vitro and in vivo models. However, the advent of induced pluripotent stem cell (iPSC) technology has provided researchers with a novel toolbox. We conducted a systematic review using the PRISMA statement. A PubMed and Web of Science online search was performed (studies published between 2006–2020) using the following search strategy: hiPSC OR iPSC OR iPS OR stem cells AND schizophrenia disorder OR personality disorder OR antisocial personality disorder OR psychopathy OR bipolar disorder OR major depressive disorder OR obsessive compulsive disorder OR anxiety disorder OR substance use disorder OR alcohol use disorder OR nicotine use disorder OR opioid use disorder OR eating disorder OR anorexia nervosa OR attention-deficit/hyperactivity disorder OR gaming disorder. Using the above search criteria, a total of 3515 studies were found. After screening, a final total of 56 studies were deemed eligible for inclusion in our study. Using iPSC technology, psychiatric disease can be studied in the context of a patient’s own unique genetic background. This has allowed great strides to be made into uncovering the etiology of psychiatric disease, as well as providing a unique paradigm for drug testing. However, there is a lack of data for certain psychiatric disorders and several limitations to present iPSC-based studies, leading us to discuss how this field may progress in the next years to increase its utility in the battle to understand psychiatric disease. KW - hiPSC KW - iPSC KW - stem cells KW - mental disorders KW - affective disorders KW - ADHD Y1 - 2020 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-235666 SN - 0300-9564 VL - 127 ER - TY - THES A1 - Kiser, Dominik Pascal T1 - Gene x Environment Interactions in Cdh13-deficient Mice: CDH13 as a Factor for Adaptation to the Environment T1 - Gen x Umwelt-Interaktionen in Cdh13-defizienten Mäusen: CDH13 als ein Faktor für Umweltanpassung N2 - Neurodevelopmental disorders, including attention-deficit/hyperactivity disorder (ADHD) and autism spectrum disorder (ASD) are disorders of mostly unknown etiopathogenesis, for which both genetic and environmental influences are expected to contribute to the phenotype observed in patients. Changes at all levels of brain function, from network connectivity between brain areas, over neuronal survival, synaptic connectivity and axonal growth, down to molecular changes and epigenetic modifications are suspected to play a key roles in these diseases, resulting in life-long behavioural changes. Genome-wide association as well as copy-number variation studies have linked cadherin-13 (CDH13) as a novel genetic risk factor to neuropsychiatric and neurodevelopmental disorders. CDH13 is highly expressed during embryonic brain development, as well as in the adult brain, where it is present in regions including the hippocampus, striatum and thalamus (among others) and is upregulated in response to chronic stress exposure. It is however unclear how CDH13 interacts with environmentally relevant cues, including stressful triggers, in the formation of long-lasting behavioural and molecular changes. It is currently unknown how the environment influences CDH13 and which long term changes in behaviour and gene expression are caused by their interaction. This work therefore investigates the interaction between CDH13 deficiency and neonatal maternal separation (MS) in mice with the aim to elucidate the function of CDH13 and its role in the response to early-life stress (ELS). For this purpose, mixed litters of wild-type (Cdh13+/+), heterozygous (Cdh13+/-) and homozygous knockout (Cdh13-/-) mice were maternally separated from postnatal day 1 (PN1) to postnatal day 14 (PN14) for 3 hours each day (180MS; PN1-PN14). In a first series of experiments, these mice were subjected to a battery of behavioural tests starting at 8 weeks of age in order to assess motor activity, memory functions as well as measures of anxiety. Subsequently, expression of RNA in various brain regions was measured using quantitativ real-time polymerase chain reaction (qRT-PCR). A second cohort of mice was exposed to the same MS procedure, but was not behaviourally tested, to assess molecular changes in hippocampus using RNA sequencing. Behavioural analysis revealed that MS had an overall anxiolytic-like effect, with mice after MS spending more time in the open arms of the elevated-plus-maze (EPM) and the light compartment in the light-dark box (LDB). As a notable exception, Cdh13-/- mice did not show an increase of time spent in the light compartment after MS compared to Cdh13+/+ and Cdh13+/- MS mice. During the Barnes-maze learning task, mice of most groups showed a similar ability in learning the location of the escape hole, both in terms of primary latency and primary errors. Cdh13-/- control (CTRL) mice however committed more primary errors than Cdh13-/- MS mice. In the contextual fear conditioning (cFC) test, Cdh13-/- mice showed more freezing responses during the extinction recall, indicating a reduced extinction of fear memory. In the step-down test, an impulsivity task, Cdh13-/- mice had a tendency to wait longer before stepping down from the platform, indicative of more hesitant behaviour. In the same animals, qRT-PCR of several brain areas revealed changes in the GABAergic and glutamatergic systems, while also highlighting changes in the gatekeeper enzyme Glykogensynthase-Kinase 3 (Gsk3a), both in relation to Cdh13 deficiency and MS. Results from the RNA sequencing study and subsequent gene-set enrichment analysis revealed changes in adhesion and developmental genes due to Cdh13 deficiency, while also highlighting a strong link between CDH13 and endoplasmatic reticulum function. In addition, some results suggest that MS increased pro-survival pathways, while a gene x environment analysis showed alterations in apoptotic pathways and migration, as well as immune factors and membrane metabolism. An analysis of the overlap between gene and environment, as well as their interaction, highlighted an effect on cell adhesion factors, underscoring their importance for adaptation to the environment. Overall, the stress model resulted in increased stress resilience in Cdh13+/+ and Cdh13+/- mice, a change absent in Cdh13-/- mice, suggesting a role of CDH13 during programming and adaptation to early-life experiences, that can results in long-lasting consequences on brain functions and associated behaviours. These changes were also visible in the RNA sequencing, where key pathways for cell-cell adhesion, neuronal survival and cell-stress adaptation were altered. In conclusion, these findings further highlight the role of CDH13 during brain development, while also shedding light on its function in the adaptation and response during (early life) environmental challenges. N2 - Neuronale Entwicklungsstörungen (NES), wie Aufmerksamkeitsdefizit-Hyperaktivitätssyndrom (ADHS) oder Autismus Spektrums Störung (ASS), haben eine größtenteils unbekannte Krankheitsentwicklung, deren klinisches Erscheinungsbild bei dem Patienten durch die individuelle Genetik und Umwelt beieinflusst wird. Veränderungen in allen funktionellen Ebenen des Gehirns, von Netzwerkaktivität zwischen unterschiedlichen Gehirnregionen, über synaptischer Verschaltung, axonalem Wachstum und den Überlebenschancen einzelner Neuronen, bis hin zu molekularen und epigenetischen Modifikationen werden als Schlüsselrollen in NES betrachtet, welche schlussendlich zu langfristigen Verhaltensauffälligkeiten führen. Genome-weite-Assoziations und genomische Kopiezahlvariations Studien haben Cadherin 13 (CDH13) als neuartiges Risikogen für neuropsychiatrische und neuronale Entwicklungsstörungen identifizieren können. CDH13 wird sowohl während der embryonalen Entwicklung, als auch im adulten Gehirn, stark exprimiert und kann dort in Regionen wie dem Hippocampus, Striatum und Thalamus gefunden werden. Darüber hinaus wird es als Reaktion auf akuten (physiologischen und psychologischen) Stress exprimiert. Gegenwärtig ist jedoch nicht bekannt, wie Umwelteinflüsse mit CDH13 interagieren und langanhaltende Veränderungen im Verhalten und der Gene Expression im Gehirn herbeiführen. Die vorliegende Arbeit untersucht daher die Interaktion zwischen CDH13 und Stress während eines frühen Lebensabschnitts. Hierfür wurden Würfe mit wildtyp (Cdh13+/+), heterozygoten (Cdh13+/-) und homozygoten knockout (Cdh13-/-) Mäusen zwischen dem ersten und vierzehnten Tag nach der Geburt für jeweils 3 Stunden von ihren Müttern getrennt (englisch: maternal separation, MS). In einem ersten Experiment wurden diese Mäuse dann im Alter von 8 Wochen in einer Reihe von Verhaltensversuchen auf ihre motorischen Fähigkeiten und Gedächtnisleistung getestet. Im Anschluss daran wurde mittels der quantitativen Polymerase Kettenreaktion (qPCR) verschiedene Gehirnregionen dieser Tiere auf Expressionsunterschiede in Faktoren für Neurotransmittersysteme, Neurogenese und DNA Methylierungsmechanismen hin analysiert. Das Hippocampus-Gewebe einer zweiten gleich aufgebauten Versuchsgruppe wurde mittels RNA Sequenzierung untersucht. Die Verhaltensanalyse zeigt das MS einen überwiegend angst-lindernden Einfluss auf die Mäuse hatte. Im Vergleich zu Mäusen ohne MS verbrachten MS-Mäuse mehr Zeit auf dem offenen Arm eines erhöhten Plus-Labyrinths, so wie in der hell-erleuchteten Seite einer Hell-Dunkel Box (HDB). Eine auffallende Ausnahme stellten jedoch die Cdh13-/- Mäuse dar, welche in der HDB keinen Zeitanstieg wie ihre Cdh13+/+ und Cdh13+/- MS Geschwister auf der hell-erleuchteten Seite aufwiesen. In dem Barnes Labyrinth (einem Test für räumliches Lernen) zeigte sich, dass alle Tiere, gemessen an den Fehlern und der Zeit die sie brauchten bis sie den Ausgang fanden, zunächst ähnliche Lernerfolge hatten. Im zweiten Teil des Experiments, in dem der Ausgang auf eine neue Position gelegt wurde, begangen Cdh13-/- Mäuse ohne MS hingegen mehr Fehler als Cdh13-/- MS Mäusee. In der Kontext-Angst-Konditionierung (KAK) zeigten männliche Cdh13-/- Mäuse mehr Angst-Starre während der Extinktions-Wiederholung; ein Befund der eine reduzierte Angst-Auslöschung impliziert. Im Abstiegs-Test, einem Impulsivitätstest, blieben Cdh13-/- Mäuse länger auf einem Podest stehen. Mittels qPCR konnte außerdem gezeigt werden dass sowohl ein Cdh13-/- Defizit, als auch MS, Veränderungen von GABAergen und glutamatergen Faktoren, so wie Änderungen in dem wichtigen Signalmolekühl Glykogensynthase-Kinase 3 (Gsk3a) verursacht haben. Die Ergebnisse der RNA Sequenzierung zeigten eine Anreicherung von Veränderungen in Adhesions-, Entwicklungs- und Endoplasmatischen Reticulumgenen in Cdh13-/- defiziten Tieren im Vergleich zu Cdh13+/+ Mäusen. Im selben Versuch trug MS zu einer erhöhten Aktivierung von Anti-Apoptotischen Signalwegen im Hippocampus bei, während Zell-Adhesionsmoleküle maßgeblich von der Wechselwirkung beider Faktoren betroffen waren. Zusammenfassend waren Cdh13+/+ und Cdh13+/- Mäuse im Gegensatz zu Cdh13-/- Tieren größtenteils stressresitenter, während die RNA Sequenzierung aufzeigte, dass CDH13 Schlüsselkomponenten von Zell-Zell-Adhesions, Überlebens und Zell-Stress-Signalwegen reguiert. Dies suggeriert, dass CDH13 die Programmierung und Anpassung an Umwelteinflüsse steuert, was wiederum lang anhaltende Auswirkungen auf molekularer Ebene und auf das Verhalten der Mäuse zur Folge hat. Abschließend legen die Befunde eine Rolle von CDH13 in der Umgebungsanpassung während der Entwicklung nahe. KW - Cadherine KW - Genexpression KW - Tiermodell KW - Animales Nervensystem KW - Verhalten KW - Cdh13 KW - RNA Sequencing KW - Gene by Environment KW - Neurodevelopmental Disorder KW - ADHD KW - Hippocampus KW - Prefrontal cortex KW - Amygdala KW - Raphe KW - Adaptation Y1 - 2019 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-179591 ER - TY - JOUR A1 - Schäfer, Nadine A1 - Friedrich, Maximilian A1 - Jørgensen, Morten Egevang A1 - Kollert, Sina A1 - Koepsell, Hermann A1 - Wischmeyer, Erhard A1 - Lesch, Klaus-Peter A1 - Geiger, Dietmar A1 - Döring, Frank T1 - Functional analysis of a triplet deletion in the gene encoding the sodium glucose transporter 3, a potential risk factor for ADHD JF - PLoS ONE N2 - Sodium-glucose transporters (SGLT) belong to the solute carrier 5 family, which is characterized by sodium dependent transport of sugars and other solutes. In contrast, the human SGLT3 (hSGLT3) isoform, encoded by SLC5A4, acts as a glucose sensor that does not transport sugar but induces membrane depolarization by Na\(^{+}\) currents upon ligand binding. Whole-exome sequencing (WES) of several extended pedigrees with high density of attention-deficit/hyperactivity disorder (ADHD) identified a triplet ATG deletion in SLC5A4 leading to a single amino acid loss (ΔM500) in the hSGLT3 protein imperfectly co-segregating with the clinical phenotype of ADHD. Since mutations in homologous domains of hSGLT1 and hSGLT2 were found to affect intestinal and renal function, respectively, we analyzed the functional properties of hSGLT3[wt] and [ΔM500] by voltage clamp and current clamp recordings from cRNA-injected Xenopus laevis oocytes. The cation conductance of hSGLT3[wt] was activated by application of glucose or the specific agonist 1-desoxynojirimycin (DNJ) as revealed by inward currents in the voltage clamp configuration and cell depolarization in the current clamp mode. Almost no currents and changes in membrane potential were observed when glucose or DNJ were applied to hSGLT3[ΔM500]-injected oocytes, demonstrating a loss of function by this amino acid deletion in hSGLT3. To monitor membrane targeting of wt and mutant hSGLT3, fusion constructs with YFP were generated, heterologously expressed in Xenopus laevis oocytes and analyzed for membrane fluorescence by confocal microscopy. In comparison to hSGLT3[wt] the fluorescent signal of mutant [ΔM500] was reduced by 43% indicating that the mutant phenotype might mainly result from inaccurate membrane targeting. As revealed by homology modeling, residue M500 is located in TM11 suggesting that in addition to the core structure (TM1-TM10) of the transporter, the surrounding TMs are equally crucial for transport/sensor function. In conclusion, our findings indicate that the deletion [ΔM500] in hSGLT3 inhibits membrane targeting and thus largely disrupts glucose-induced sodium conductance, which may, in interaction with other ADHD risk-related gene variants, influence the risk for ADHD in deletion carriers. KW - Xenopus laevis oocytes KW - ADHD KW - glucose KW - cell membranes KW - membrane proteins KW - membrane potential KW - crystal structure KW - amino acid analysis Y1 - 2018 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-176495 VL - 13 IS - 10 ER - TY - JOUR A1 - Biehl, Stefanie C. A1 - Dresler, Thomas A1 - Reif, Andreas A1 - Scheuerpflug, Peter A1 - Deckert, Jürgen A1 - Herrmann, Martin J. T1 - Dopamine Transporter (DAT1) and Dopamine Receptor D4 (DRD4) Genotypes Differentially Impact on Electrophysiological Correlates of Error Processing JF - PLoS One N2 - Recent studies as well as theoretical models of error processing assign fundamental importance to the brain's dopaminergic system. Research about how the electrophysiological correlates of error processing—the error-related negativity (ERN) and the error positivity (Pe)—are influenced by variations of common dopaminergic genes, however, is still relatively scarce. In the present study, we therefore investigated whether polymorphisms in the DAT1 gene and in the DRD4 gene, respectively, lead to interindividual differences in these error processing correlates. One hundred sixty participants completed a version of the Eriksen Flanker Task while a 26-channel EEG was recorded. The task was slightly modified in order to increase error rates. During data analysis, participants were split into two groups depending on their DAT1 and their DRD4 genotypes, respectively. ERN and Pe amplitudes after correct responses and after errors as well as difference amplitudes between errors and correct responses were analyzed. We found a differential effect of DAT1 genotype on the Pe difference amplitude but not on the ERN difference amplitude, while the reverse was true for DRD4 genotype. These findings are in line with predictions from theoretical models of dopaminergic transmission in the brain. They furthermore tie results from clinical investigations of disorders impacting on the dopamine system to genetic variations known to be at-risk genotypes. KW - haplotypes KW - electroencephalography KW - basal ganglia KW - reaction time KW - dopaminergics KW - dopamine KW - ADHD KW - research errors Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-137930 VL - 6 IS - 12 ER - TY - JOUR A1 - Jain, M. A1 - Vélez, J. I. A1 - Acosta, M. T. A1 - Palacio, L. G. A1 - Balog, J. A1 - Roessler, E. A1 - Pineda, D. A1 - Londoño, A. C. A1 - Palacio, J. D. A1 - Arbelaez, A. A1 - Lopera, F. A1 - Elia, J. A1 - Hakonarson, H. A1 - Seitz, C. A1 - Freitag, C. M. A1 - Palmason, H. A1 - Meyer, J. A1 - Romanos, M. A1 - Walitza, S. A1 - Hemminger, U. A1 - Warnke, A. A1 - Romanos, J. A1 - Renner, T. A1 - Jacob, C. A1 - Lesch, K.-P. A1 - Swanson, J. A1 - Castellanos, F. X. A1 - Bailey-Wilson, J. E. A1 - Arcos-Burgos, M. A1 - Muenke, M. T1 - A cooperative interaction between LPHN3 and 11q doubles the risk for ADHD JF - Molecular Psychiatry N2 - In previous studies of a genetic isolate, we identified significant linkage of attention deficit hyperactivity disorder (ADHD) to 4q, 5q, 8q, 11q and 17p. The existence of unique large size families linked to multiple regions, and the fact that these families came from an isolated population, we hypothesized that two-locus interaction contributions to ADHD were plausible. Several analytical models converged to show significant interaction between 4q and 11q (P<1 × 10−8) and 11q and 17p (P<1 × 10−6). As we have identified that common variants of the LPHN3 gene were responsible for the 4q linkage signal, we focused on 4q–11q interaction to determine that single-nucleotide polymorphisms (SNPs) harbored in the LPHN3 gene interact with SNPs spanning the 11q region that contains DRD2 and NCAM1 genes, to double the risk of developing ADHD. This interaction not only explains genetic effects much better than taking each of these loci effects by separated but also differences in brain metabolism as depicted by proton magnetic resonance spectroscopy data and pharmacogenetic response to stimulant medication. These findings not only add information about how high order genetic interactions might be implicated in conferring susceptibility to develop ADHD but also show that future studies of the effects of genetic interactions on ADHD clinical information will help to shape predictive models of individual outcome. KW - ADHD KW - genetic interaction KW - LPHN3 KW - NCAM1 KW - DRD2 Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-125128 VL - 17 ER - TY - JOUR A1 - Brem, Silvia A1 - Grünblatt, Edna A1 - Drechsler, Renate A1 - Riederer, Peter A1 - Walitza, Susanne T1 - The neurobiological link between OCD and ADHD JF - Attention Deficit and Hyperactivity Disorders N2 - Obsessive compulsive disorder (OCD) and attention deficit hyperactivity disorder (ADHD) are two of the most common neuropsychiatric diseases in paediatric populations. The high comorbidity of ADHD and OCD with each other, especially of ADHD in paediatric OCD, is well described. OCD and ADHD often follow a chronic course with persistent rates of at least 40–50 %. Family studies showed high heritability in ADHD and OCD, and some genetic findings showed similar variants for both disorders of the same pathogenetic mechanisms, whereas other genetic findings may differentiate between ADHD and OCD. Neuropsychological and neuroimaging studies suggest that partly similar executive functions are affected in both disorders. The deficits in the corresponding brain networks may be responsible for the perseverative, compulsive symptoms in OCD but also for the disinhibited and impulsive symptoms characterizing ADHD. This article reviews the current literature of neuroimaging, neurochemical circuitry, neuropsychological and genetic findings considering similarities as well as differences between OCD and ADHD. KW - OCD KW - ADHD KW - neuroimaging KW - genetics KW - neuropsychology KW - fMRI KW - MRI KW - EEG KW - neurobiology Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-121312 VL - 6 IS - 3 ER - TY - JOUR A1 - Jarick, I. A1 - Volckmar, A. L. A1 - Pütter, C. A1 - Pechlivanis, S. A1 - Nguyen, T. T. A1 - Dauvermann, M. R. A1 - Beck, S. A1 - Albayrak, Ö. A1 - Scherag, S. A1 - Gilsbach, S. A1 - Cichon, S. A1 - Hoffmann, P. A1 - Degenhardt, F. A1 - Nöthen, M. M. A1 - Schreiber, S. A1 - Wichmann, H. E. A1 - Jöckel, K. H. A1 - Heinrich, J. A1 - Tiesler, C. M. T. A1 - Faraone, S. V. A1 - Walitza, S. A1 - Sinzig, J. A1 - Freitag, C. A1 - Meyer, J. A1 - Herpertz-Dahlmann, B. A1 - Lehmkuhl, G. A1 - Renner, T. J. A1 - Warnke, A. A1 - Romanos, M. A1 - Lesch, K. P. A1 - Reif, A. A1 - Schimmelmann, B. G. A1 - Hebebrand, J. A1 - Scherag, A. A1 - Hinney, A. T1 - Genome-wide analysis of rare copy number variations reveals PARK2 as a candidate gene for attention-deficit/hyperactivity disorder JF - Molecular Psychiatry N2 - Attention-deficit/hyperactivity disorder (ADHD) is a common, highly heritable neurodevelopmental disorder. Genetic loci have not yet been identified by genome-wide association studies. Rare copy number variations (CNVs), such as chromosomal deletions or duplications, have been implicated in ADHD and other neurodevelopmental disorders. To identify rare (frequency ≤1%) CNVs that increase the risk of ADHD, we performed a whole-genome CNV analysis based on 489 young ADHD patients and 1285 adult population-based controls and identified one significantly associated CNV region. In tests for a global burden of large (>500 kb) rare CNVs, we observed a nonsignificant (P=0.271) 1.126-fold enriched rate of subjects carrying at least one such CNV in the group of ADHD cases. Locus-specific tests of association were used to assess if there were more rare CNVs in cases compared with controls. Detected CNVs, which were significantly enriched in the ADHD group, were validated by quantitative (q)PCR. Findings were replicated in an independent sample of 386 young patients with ADHD and 781 young population-based healthy controls. We identified rare CNVs within the parkinson protein 2 gene (PARK2) with a significantly higher prevalence in ADHD patients than in controls \((P=2.8 × 10^{-4})\) after empirical correction for genome-wide testing). In total, the PARK2 locus (chr 6: 162 659 756-162 767 019) harboured three deletions and nine duplications in the ADHD patients and two deletions and two duplications in the controls. By qPCR analysis, we validated 11 of the 12 CNVs in ADHD patients \((P=1.2 × 10^{-3})\) after empirical correction for genome-wide testing). In the replication sample, CNVs at the PARK2 locus were found in four additional ADHD patients and one additional control \((P=4.3 × 10^{-2})\). Our results suggest that copy number variants at the PARK2 locus contribute to the genetic susceptibility of ADHD. Mutations and CNVs in PARK2 are known to be associated with Parkinson disease. KW - children KW - ADHD KW - CNVs KW - GWAS KW - PARK2 Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-121131 VL - 19 IS - 19 ER - TY - JOUR A1 - Biehl, Stefanie C. A1 - Ehlis, Ann-Christine A1 - Müller, Laura D. A1 - Niklaus, Andrea A1 - Pauli, Paul A1 - Herrmann, Martin J. T1 - The impact of task relevance and degree of distraction on stimulus processing JF - BMC Neuroscience N2 - Background The impact of task relevance on event-related potential amplitudes of early visual processing was previously demonstrated. Study designs, however, differ greatly, not allowing simultaneous investigation of how both degree of distraction and task relevance influence processing variations. In our study, we combined different features of previous tasks. We used a modified 1-back task in which task relevant and task irrelevant stimuli were alternately presented. The task irrelevant stimuli could be from the same or from a different category as the task relevant stimuli, thereby producing high and low distracting task irrelevant stimuli. In addition, the paradigm comprised a passive viewing condition. Thus, our paradigm enabled us to compare the processing of task relevant stimuli, task irrelevant stimuli with differing degrees of distraction, and passively viewed stimuli. EEG data from twenty participants was collected and mean P100 and N170 amplitudes were analyzed. Furthermore, a potential connection of stimulus processing and symptoms of attention deficit hyperactivity disorder (ADHD) was investigated. Results Our results show a modulation of peak N170 amplitudes by task relevance. N170 amplitudes to task relevant stimuli were significantly higher than to high distracting task irrelevant or passively viewed stimuli. In addition, amplitudes to low distracting task irrelevant stimuli were significantly higher than to high distracting stimuli. N170 amplitudes to passively viewed stimuli were not significantly different from either kind of task irrelevant stimuli. Participants with more symptoms of hyperactivity and impulsivity showed decreased N170 amplitudes across all task conditions. On a behavioral level, lower N170 enhancement efficiency was significantly correlated with false alarm responses. Conclusions Our results point to a processing enhancement of task relevant stimuli. Unlike P100 amplitudes, N170 amplitudes were strongly influenced by enhancement and enhancement efficiency seemed to have direct behavioral consequences. These findings have potential implications for models of clinical disorders affecting selective attention, especially ADHD. KW - Selective attention KW - Working memory KW - Cognitive control KW - P100 KW - N170 KW - ADHD Y1 - 2013 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-97271 UR - http://www.biomedcentral.com/1471-2202/14/107 ER - TY - THES A1 - Weißflog, Lena T1 - Molecular Genetics of Emotional Dysregulation in Attention-Deficit/Hyperactivity Disorder T1 - Molekulargenetik emotionaler Dysregulation bei Aufmerksamkeitsdefizit-/Hyperaktivitätssyndrom N2 - Attention-deficit/hyperactivity disorder (ADHD) is a genetically complex childhood onset neurodevelopmental disorder which is highly persistent into adulthood. Several chromo-somal regions associated with this disorder were identified previously in genome-wide linkage scans, association (GWA) and copy number variation (CNV) studies. In this work the results of case-control and family-based association studies using a can-didate gene approach are presented. For this purpose, possible candidate genes for ADHD have been finemapped using mass array-based SNP genotyping. The genes KCNIP4, CDH13 and DIRAS2 have been found to be associated with ADHD and, in addition, with cluster B and cluster C personality disorders (PD) which are known to be related to ADHD. Most of the associations found in this work would not withstand correction for multiple testing. However, a replication in several independent populations has been achieved and in conjunction with previous evidence from linkage, GWA and CNV studies, it is assumed that there are true associations between those genes and ADHD. Further investigation of DIRAS2 by quantitative real-time PCR (qPCR) revealed expression in the hippocampus, cerebral cortex and cerebellum of the human brain and a significant increase in Diras2 expression in the mouse brain during early development. In situ hybrid-izations on murine brain slices confirmed the results gained by qPCR in the human brain. Moreover, Diras2 is expressed in the basolateral amygdala, structures of the olfactory system and several other brain regions which have been implicated in the psychopatholo-gy of ADHD. In conclusion, the results of this work provide further support to the existence of a strong genetic component in the pathophysiology of ADHD and related disorders. KCNIP4, CDH13 and DIRAS2 are promising candidates and need to be further examined to get more knowledge about the neurobiological basis of this common disease. This knowledge is essential for understanding the molecular mechanisms underlying the emergence of this disorder and for the development of new treatment strategies. N2 - Bei Aufmerksamkeitsdefizit-/Hyperaktivitätssyndrom (ADHS) handelt es sich um eine ge-netisch komplexe neuronale Entwicklungsstörung, die im Kindesalter einsetzt und eine hohe Persistenz ins Erwachsenenalter aufweist. Mehrere chromosomale Regionen zeigten eine Assoziation mit dieser Erkrankung in genomweiten Kopplungsanalysen, Assoziations- (GWA) und Copie Number Variation (CNV) Studien. In dieser Arbeit werden die Ergebnisse von Fall-Kontroll- und Familien-basierten Assozia-tionsstudien, basierend auf der Annahme bestimmter Kandidatengene, vorgestellt. Die möglichen Kandidatengene wurden mit Hilfe eines massenspektrometrischen Verfahrens für SNP Genotypisierungen untersucht. Für die Gene KCNIP4, CDH13 und DIRAS2 konnte eine Assoziation mit ADHS und zudem mit Persönlichkeitsstörungen gefunden werden. Die meisten der in dieser Arbeit berichteten Assoziationen würden einer Korrektur für multiples Testen nicht standhalten. Dennoch kann von einer tatsächlichen Assoziation dieser Gene mit ADHS ausgegangen werden da eine Replikation in verschiedenen unab-hängigen Stichproben stattgefunden hat und zudem vorangegangene Kopplungsanalysen, GWA und CNV Studien auf eine Assoziation hindeuten. Die weitere Untersuchung des DIRAS2 Gens mit Hilfe von quantitativer real-time PCR (qPCR) ergab eine Expression des Gens im Hippocampus, dem zerebralen Kortex und dem Kleinhirn des Menschen. Zudem wurde ein signifikanter Anstieg der Diras2 Expression im murinen Gehirn während der frühen Entwicklungsstadien beobachtet. In situ Hybridisie-rungen auf Maushirnschnitten bestätigten die Ergebnisse der qPCR im menschlichen Ge-hirn. Außerdem wird Diras2 in der basolateralen Amygdala, in Komponenten des olfakto-rischen Systems und in mehreren anderen Hirnarealen, die vermutlich an der Pathologie von ADHS beteiligt sind, exprimiert. Zusammenfassend untermauern die Ergebnisse dieser Arbeit die Tatsache dass eine star-ke genetische Komponente an der Entstehung von ADHS beteiligt ist. KCNIP4, CDH13 und DIRAS2 sind vielversprechende Kandidatengene und sollten weiter untersucht werden um nähere Einblicke in die Neurobiologie dieser häufigen Erkrankung zu erhalten. Das dadurch erlangte Wissen ist notwendig um die molekularen Mechanismen die ADHS zu-grunde liegen zu verstehen und um neue Behandlungsstrategien entwickeln zu können. KW - Aufmerksamkeits-Defizit-Syndrom KW - Molekulargenetik KW - Assoziation KW - ADHD KW - genetics KW - association studies Y1 - 2011 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-69345 ER -