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Attention-deficit/hyperactivity disorder (ADHD) is the most prevalent neurodevelopmental disorder described in psychiatry today. ADHD arises during early childhood and is characterized by an age-inappropriate level of inattention, hyperactivity, impulsivity, and partially emotional dysregulation. Besides, substantial psychiatric comorbidity further broadens the symptomatic spectrum. Despite advances in ADHD research by genetic- and imaging studies, the etiopathogenesis of ADHD remains largely unclear. Twin studies suggest a heritability of 70-80 % that, based on genome-wide investigations, is assumed to be polygenic and a mixed composite of small and large, common and rare genetic variants. In recent years the number of genetic risk candidates is continuously increased. However, for most, a biological link to neuropathology and symptomatology of the patient is still missing. Uncovering this link is vital for a better understanding of the disorder, the identification of new treatment targets, and therefore the development of a more targeted and possibly personalized therapy.
The present thesis addresses the issue for the ADHD risk candidates GRM8, FOXP2, and GAD1. By establishing loss of function zebrafish models, using CRISPR/Cas9 derived mutagenesis and antisense oligonucleotides, and studying them for morphological, functional, and behavioral alterations, it provides novel insights into the candidate's contribution to neuropathology and ADHD associated phenotypes. Using locomotor activity as behavioral read-out, the present work identified a genetic and functional implication of Grm8a, Grm8b, Foxp2, and Gad1b in ADHD associated hyperactivity. Further, it provides substantial evidence that the function of Grm8a, Grm8b, Foxp2, and Gad1b in activity regulation involves GABAergic signaling. Preliminary indications suggest that the three candidates interfere with GABAergic signaling in the ventral forebrain/striatum. However, according to present and previous data, via different biological mechanisms such as GABA synthesis, transmitter release regulation, synapse formation and/or transcriptional regulation of synaptic components. Intriguingly, this work further demonstrates that the activity regulating circuit, affected upon Foxp2 and Gad1b loss of function, is involved in the therapeutic effect mechanism of methylphenidate. Altogether, the present thesis identified altered GABAergic signaling in activity regulating circuits in, presumably, the ventral forebrain as neuropathological underpinning of ADHD associated hyperactivity. Further, it demonstrates altered GABAergic signaling as mechanistic link between the genetic disruption of Grm8a, Grm8b, Foxp2, and Gad1b and ADHD symptomatology like hyperactivity. Thus, this thesis highlights GABAergic signaling in activity regulating circuits and, in this context, Grm8a, Grm8b, Foxp2, and Gad1b as exciting targets for future investigations on ADHD etiopathogenesis and the development of novel therapeutic interventions for ADHD related hyperactivity. Additionally, thigmotaxis measurements suggest Grm8a, Grm8b, and Gad1b as interesting candidates for prospective studies on comorbid anxiety in ADHD. Furthermore, expression analysis in foxp2 mutants demonstrates Foxp2 as regulator of ADHD associated gene sets and neurodevelopmental disorder (NDD) overarching genetic and functional networks with possible implications for ADHD polygenicity and comorbidity. Finally, with the characterization of gene expression patterns and the generation and validation of genetic zebrafish models for Grm8a, Grm8b, Foxp2, and Gad1b, the present thesis laid the groundwork for future research efforts, for instance, the identification of the functional circuit(s) and biological mechanism(s) by which Grm8a, Grm8b, Foxp2, and Gad1b loss of function interfere with GABAergic signaling and ultimately induce hyperactivity.
Biological Substrates of Waiting Impulsivity in Children and Adolescents with and without ADHD
(2023)
Focus of the present work were the questions whether and how the concept of waiting impulsivity (WI), defined as the ability to regulate a response in anticipation of reward and measured by the 4-choice serial reaction time task (4-CSRTT), may contribute to our understanding of Attention-Deficit/Hyperactivity Disorder (ADHD) and its neurobiological underpinnings.
To address this topic, two studies were conducted: in a first study, the relationship be-tween 4-CSRTT behavioral measures, neural correlates and ADHD symptom domains, i.e. inattention (IA) and hyperactivity/impulsivity (H/I) was explored in a pooled sample of 90 children and adolescents with (n=44) and without (n=46) ADHD diagnosis. As ex-pected, IA was associated with dorsolateral prefrontal brain regions linked with executive functions and attentional control, which was evident on the structural and the functional level. Higher levels of both IA and H/I covaried with decreased activity in the right ven-trolateral prefrontal cortex (PFC), a central structure for response inhibition. Moderation analyses revealed that H/I-related decreased activation in this region did not map linearly on difficulties on the behavioral level: brain activation was a significant predictor of task accuracy only, when H/I symptoms were low/absent but not for clinically relevant ADHD symptoms. Further, H/I was implicated in dysfunctional top-down control of reward eval-uation. Both symptom domains correlated positively with hippocampus (HC) activity in anticipation of reward. In addition, for high H/I symptoms, greater activation in the HC was found to correlate with higher motivation on the behavioral level, indicating that rein-forcement-learning and/or contingency awareness may contribute to altered reward pro-cessing in ADHD patients.
In a second study, the possible serotonergic modulation of WI and the ADHD-WI relation-ship was addressed in a sub-sample comprising 86 children and adolescents of study I. The effects of a functional variant in the gene coding for the rate-limiting enzyme in the synthesis of brain serotonin on behavior and structure or function of the WI-network was investigated. Moderation analyses revealed that on the behavioral level, a negative corre-lation between accuracy and IA was found only in GG-homozygotes, whereas no signifi-cant relationship emerged for carriers of the T-allele. This is in line with previous reports of differential effects of serotonergic modulation on attentional performance depending on the presence of ADHD symptoms. A trend-wise interaction effect of genotype and IA for regional volume of the right middle frontal gyrus was interpreted as a hint towards an involvement of the PFC in this relationship, although a more complex mechanism includ-ing developmental effects can be assumed. In addition, interaction effects of genotype and IA were found for brain activation in the amygdala (AMY) und HC during perfor-mance of the 4-CSRTT, while another interaction was found for H/I symptoms and geno-type for right AMY volume. These findings indicate a serotonergic modulation of coding of the emotional value of reward during performance of the 4-CSRTT that varies de-pending on the extent of psychopathology-associated traits.
Taken together, it was shown that the 4-CSRTT taps distinct domains of impulsivity with relevance to ADHD symptomatology: (proactive) response inhibition difficulties in relation with anticipation of reward. Furthermore, the two symptom domains, IA and H/I, contrib-ute differently to WI, which emphasizes the need to distinguish both in the research of ADHD. The results of study II emphasized the relevance of serotonergic transmission especially for attentional control and emotional processing. Although the present findings need replication and further refinement in more homogenous age groups, the use of the 4-CSRTT with a dimensional approach is a very promising strategy, which will hopefully extend our understanding of impulsivity-related mental disorders in the future.
Zusammenfassung
1) Fragestellung und zentrale Untersuchung
Unter der Hypothese, dass die Transportrate des Glukosetransporters Typ 3 (GLUT3)
abhängig von der Kopienanzahl (CNV) des für ihn kodierenden Gens SLC2A3 ist,
wurden Zelllinien mit drei Kopien (Duplikation) mit Kontroll-Zelllinien mit nur zwei Kopien
bezüglich ihrer Glukoseaufnahme miteinander verglichen (n=2; N=9). Hierzu wurde die
zelluläre Glukoseaufnahme mittels radioaktiv markierter 2-Desoxyglukose in via
Eppstein-Barr-Virus immortalisierten lymphoblastoiden Zelllinien (EBV-LCLs)
gemessen. In den initialen Untersuchungen zeigt sich, dass das Protokoll an manchen
Stellen zu viel Spielraum lässt. Die Methode wird daraufhin standardisiert und bezüglich
einiger Parameter angepasst: g-Zentrifugeneinstellung, Mischen/Aliquotieren,
Zellanzahl, Replikatanzahl, Inkubationszeit/-intervalle und Durchführungsdauer.
2) Wichtigste Ergebnisse
Die funktionelle Untersuchung zur Duplikation des SLC2A3-Gens in Patienten mit
Aufmerksamkeitsdefizit-/Hyperaktivitätsstörung (ADHS) zeigt schließlich im
dynamischen Aushungerungsversuch der EBV-LCLs über vier Tage (Vergleich t2 zu t1)
statistisch für die Gruppen eine deutliche Differenz mit mittlerer Effektstärke (Lineares
Gemischtes Modell; p = 0,06; Cohens d = 0,37).
Zum zweiten Messzeitpunkt (t2) zeigt sich statistisch zwischen den Gruppen eine sehr
signifikante Differenz mit hoher Effektstärke (Lineares Gemischtes Modell; p < 0,006;
Cohens d = 0,55).
Damit konnte in dieser Arbeit nachgewiesen werden, dass die SLC2A3-Duplikation
neben dem Gendosiseffekt auf mRNA-Ebene auch hypermorph funktionelle
Veränderungen auf zellulärer Ebene nach sich zieht. Nachfolgende Untersuchungen
sollten vor diesem Hintergrund mögliche Kofaktoren investigieren und auf Alterationen
in nachgeschalteten Signalwegen abzielen.
Einleitung: Unter dem Begriff exekutive Funktionen (EF) werden häufig die Komponenten Inhibition, kognitive Flexibilität und Aktualisierung von Arbeitsgedächtnisrepräsentationen subsumiert. EF sind bereichsübergreifende Prädiktoren schulischer Leistungen. Verschiedene Operationalisierungen derselben Komponente, z.B. Performanztests und Elterneinschätzungen, zeigen häufig nur geringe Interkorrelationen. Die Methoden scheinen unterschiedliche Aspekte einer Komponente zu erfassen, daher könnte eine Kombination zur Vorhersage schulischer Leistungen sinnvoll sein. Methode: N = 96 Erst- und Zweitklässler_innen mit und ohne Entwicklungsauffälligkeiten wurden mittels EF-Performanztests und Schulleistungstests zu Mathematik und Lesen untersucht. Per Fragebogen wurden elternbeurteilte EF und als Kontrollvariablen der sozioökonomische Status (SÖS) und das Vorliegen von Merkmalen einer Aufmerksamkeitsdefizit-Hyperaktivitätsstörung (ADHS) erfasst. Ergebnisse: Elternbeurteilungen hatten über die Performanztests hinaus einen bedeutsamen Vorhersagewert für die Mathematik- und Leseleistung. Der Einfluss von Alter, SÖS und ADHS-Merkmalen wurde kontrolliert. Diskussion: Die kombinierte Anwendung beider Erfassungsmethoden scheint somit vorteilhaft für die Prognose schulischer Leistungen und die Prävention von Schulleistungsproblemen.
In der dargestellten Arbeit wurden verschiedene Hypothesen im Hinblick auf die berufliche und gesundheitliche Belastung von Eltern mit Kindern, die an ADHS leiden, untersucht. So wurde zunächst der Fragestellung nachgegangen, in wieweit das von ADHS betroffene Kind in der Familie selbst zu einer erhöhten Belastung der Eltern am Arbeitsplatz und somit zu einer gesteigerten gesundheitlichen Einschränkung führt. Zudem untersuchten wir die Auswirkungen einer möglichen eigenen ADHS-Symptomatik in der Kindheit laut WURS auf die gesundheitliche Verfassung und die Leistungsfähigkeit am Arbeitsplatz. Schließlich wurde in der dritten Hypothese die Frage untersucht, in wieweit ein Effekt der Anzahl betroffener Kinder mit ADHS innerhalb einer Familie feststellbar ist.
Entsprechend wurde eine vergleichende Untersuchung mit einer klinischen Stichprobe (n=91) und einer gesunden Vergleichsstichprobe (n=198) durchgeführt. Um die verschiedenen Einflussfaktoren verifizierbar zu machen, wurden verschiedene Untersuchungsinstrumente in Form von Fragebögen sowohl an die klinische Stichprobe als auch an die Vergleichsstichprobe (Familien, deren Kinder als gesund beschrieben wurden) verteilt. Zur allgemeinen Einschätzung von Verhaltensauffälligkeiten der Kinder in den jeweiligen Familien wurde die Child-Behavior-Checklist von den Eltern ausgefüllt. Zudem schätzten die Eltern über den Fremdbeurteilungsbogen für hyperkinetische Störungen die ADHS-Symptomatik ihrer Kinder ein. Darüber hinaus beurteilten die Eltern eine mögliche eigene ADHS-Symptomatik in der Kindheit über die retrospektiv ausgelegte Wender Utah Rating Scale. Der individuelle Gesundheitszustand der Väter und Mütter wurde über den „EQ-5D“ erfragt, während die Belastung am Arbeitsplatz mittels der Work Limitation Questionnaire ermittelt wurde. Schließlich füllten alle teilnehmenden Eltern einen sozioökonomischen Fragebogen aus, in dem Alter, Geschlecht, Familienstand, Schulabschluss und das Haushaltsnettoeinkommen berücksichtigt wurden.
In zahlreichen, im Diskussionsteil bereits erwähnten Studien wurde eine Mehrbelastung der Eltern festgestellt. In der vorliegenden Arbeit wurden darüber hinaus die konkreten Auswirkungen dieser bereits festgestellten Mehrbelastung auf den Gesundheitszustand und das berufliche Umfeld untersucht. Die Untersuchung dieser Auswirkungen auf das alltägliche Leben der betroffenen Eltern geriet bislang kaum in den Fokus wissenschaftlicher Arbeiten. Um zukünftig betroffene Familien gezielter in unterschiedlichen Lebensbereichen unterstützen zu können ist es jedoch von eminenter Bedeutung, diese Auswirkungen zu kennen und besser zu verstehen.
In den Ergebnissen konnte konkret gezeigt werden, dass bezüglich der Hypothese 1 die Anwesenheit eines ADHS-Kindes innerhalb einer Familie den Gesundheitszustand der Eltern laut Selbsturteil im EQ-5D signifikant beeinflusst. Im Rahmen der beruflichen Belastung war feststellbar, dass ein ADHS-Kind sich signifikant auf die physische Konstitution laut WLQ der Eltern auswirkt. Die Untersuchung der Hypothese II ergab, dass eine mögliche eigene ADHS-Symptomatik in der Kindheit sich auf unterschiedliche Dimensionen im beruflichen Umfeld auswirkt, jedoch nicht signifikant auf den individuellen Gesundheitszustand. Väter und Mütter, die selbst in ihrer Kindheit ADHS-Symptome angaben, geben eine signifikante Beeinträchtigung bezüglich der mentalen Fähigkeiten, des Zeitmanagements und der allgemeinen Arbeitsproduktivität laut Selbsteinschätzung im WLQ an. Eine physische Einschränkung am Arbeitsplatz laut WLQ war bei den Vätern signifikant feststellbar, nicht jedoch bei den Müttern. Die Ergebnisse der Hypothese III ergaben, dass bezüglich der Arbeitsfähigkeit bereits bei einem oder mehr Kindern mit ADHS die kognitiven Fähigkeiten der Eltern am Arbeitsplatz laut WLQ beeinträchtigt sind. Gleichermaßen wird die Arbeitsproduktivität bereits bei einem oder mehr von ADHS betroffenen Kindern signifikant beeinflusst. Auf die physische Konstitution der Eltern laut Selbsteinschätzung im WLQ haben ein oder auch mehrere von ADHS betroffene Kinder jedoch keinen signifikanten Einfluss. Die zeitliche Organisation der Eltern am Arbeitsplatz laut WLQ ist folglich bei einem Kind mit ADHS noch nicht signifikant beeinträchtigt, wohl aber, wenn mehr als ein Kind betroffen ist. Ebenso ist der Gesundheitszustand der Eltern laut EQ-5D erst ab zwei betroffenen Kindern in einer Familie durch diesen Umstand beeinflusst.
Zusammenfassend lässt sich also feststellen, dass durch die Anwesenheit eines Kindes mit ADHS in einer Familie eher der Gesundheitszustand der Eltern signifikant beeinflusst wird, wohingegen die eigene ADHS-Symptomatik der Eltern in der Kindheit viel mehr zu einer signifikanten und mehrdimensionalen Beeinträchtigung am Arbeitsplatz führt. Diese Erkenntnis zeigt, dass die eigene ADHS-Symptomatik der Eltern in der Kindheit neben der Anwesenheit eines ADHS - Kindes nicht unerhebliche Auswirkungen auf die alltäglichen Aufgaben der Betroffenen hat. Die Erkenntnis dieser neuen Zusammenhänge sollte in zukünftigen Forschungsvorhaben berücksichtigt werden.
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.
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.
Attention-deficit/hyperactivity disorder (ADHD) is a neurodevelopmental disorder with an estimated heritability of around 70%. In order to fully understand ADHD biology it is necessary to incorporate multiple different types of research. In this thesis, both human and animal model research is described as both lines of research are required to elucidate the aetiology of ADHD and development new treatments. The role of a single gene, Adhesion G protein-coupled receptor L3 (ADGRL3) was investigated using a knockout mouse model. ADGRL3 has putative roles in neuronal migration and synapse function. Various polymorphisms in ADGRL3 have been linked with an increased risk of attention deficit/hyperactivity disorder (ADHD) in human studies. Adgrl3-deficient mice were examined across multiple behavioural domains related to ADHD: locomotive activity, visuospatial and recognition memory, gait impulsivity, aggression, sociability and anxiety-like behaviour. The transcriptomic alterations caused by Adgrl3-depletion were analysed by RNA-sequencing of three ADHD-relevant brain regions: prefrontal cortex (PFC), hippocampus and striatum. Increased locomotive activity in Adgrl3-/- mice was observed across all tests with the specific gait analysis revealing subtle gait abnormalities. Spatial memory and learning domains were also impaired in these mice. Increased levels of impulsivity and sociability accompanying decreased aggression were also detected. None of these alterations were observed in Adgrl3+/- mice. The numbers of genes found to exhibit differential expression was relatively small in all brain regions sequenced. The absence of large scale gene expression dysregulation indicates a specific pathway of action, rather than a broad neurobiological perturbation. The PFC had the greatest number of differentially expressed genes and gene-set analysis of differential expression in this brain region detected a number of ADHD-relevant pathways including dopaminergic synapses as well as cocaine and amphetamine addiction. The most dysregulated gene in the PFC was Slc6a3 which codes for the dopamine transporter, a molecule vital to current pharmacological treatment of ADHD. The behavioural and transcriptomic results described in this thesis further validate Adgrl3 constitutive knockout mice as an experimental model of ADHD and provide neuroanatomical targets for future studies involving ADGRL3 modified animal models.
The study of ADHD risk genes such as ADGRL3 requires the gene to be first identified using human studies. These studies may be genome based such as genome wide association studies (GWAS) or transcriptome based using microarray or RNA sequencing technology. To explore ADHD biology in humans the research described in this thesis includes both GWAS and trancriptomic data. A two-step transcriptome profiling was performed in peripheral blood mononuclear cells (PBMCs) of 143 ADHD subjects and 169 healthy controls. We combined GWAS and expression data in an expression-based Polygenic Risk Score (PRS) analysis in a total sample of 879 ADHD cases and 1919 controls from three different datasets. Through this exploratory study we found eight differentially expressed genes in ADHD and no support for the genetic background of the disorder playing a role in the aberrant expression levels identified. These results highlight promising candidate genes and gene pathways for ADHD and support the use of peripheral tissues to assess gene expression signatures for ADHD.
This thesis illustrates how both human and animal model research is required to increase our understanding of ADHD. The animal models provide biological insight into the targets identified in human studies and may themselves provide further relevant gene targets. Only by combining research from disparate sources can we develop the thorough understanding on ADHD biology required for treatment development, which is the ultimate goal of translational science research.
Tetrahydroisoquinolines (TIQs) such as salsolinol (SAL), norsalsolinol (NSAL) and their methylated derivatives N-methyl-norsalsolinol (NMNSAL) and N-methyl-salsolinol (NMSAL), modulate dopaminergic neurotransmission and metabolism in the central nervous system. Dopaminergic neurotransmission is thought to play an important role in the pathophysiology of chronic tic disorders, such as Tourette syndrome (TS). Therefore, the urinary concentrations of these TIQ derivatives were measured in patients with TS and patients with comorbid attention-deficit/hyperactivity disorder (TS + ADHD) compared with controls. Seventeen patients with TS, 12 with TS and ADHD, and 19 age-matched healthy controls with no medication took part in this study. Free levels of NSAL, NMNSAL, SAL, and NMSAL in urine were measured by a two-phase chromatographic approach. Furthermore, individual TIQ concentrations in TS patients were used in receiver-operating characteristics (ROC) curve analysis to examine the diagnostic value. NSAL concentrations were elevated significantly in TS [434.67 ± 55.4 nmol/l (standard error of mean = S.E.M.), two-way ANOVA, p < 0.0001] and TS + ADHD patients [605.18 ± 170.21 nmol/l (S.E.M.), two-way ANOVA, p < 0.0001] compared with controls [107.02 ± 33.18 nmol/l (S.E.M.), two-way ANOVA, p < 0.0001] and NSAL levels in TS + ADHD patients were elevated significantly in comparison with TS patients (two-way ANOVA, p = 0.017). NSAL demonstrated an AUC of 0.93 ± 0.046 (S.E.M) the highest diagnostic value of all metabolites for the diagnosis of TS. Our results suggest a dopaminergic hyperactivity underlying the pathophysiology of TS and ADHD. In addition, NSAL concentrations in urine may be a potential diagnostic biomarker of TS.
While impulsivity is a basic feature of attention-deficit/hyperactivity disorder (ADHD), no study explored the effect of different components of the Impulsiveness (Imp) and Venturesomeness (Vent) scale (IV7) on psychiatric comorbidities and an ADHD polygenic risk score (PRS). We used the IV7 self-report scale in an adult ADHD sample of 903 patients, 70% suffering from additional comorbid disorders, and in a subsample of 435 genotyped patients. Venturesomeness, unlike immediate Impulsivity, is not specific to ADHD. We consequently analyzed the influence of Imp and Vent also in the context of a PRS on psychiatric comorbidities of ADHD. Vent shows a distinctly different distribution of comorbidities, e.g., less anxiety and depression. PRS showed no effect on different ADHD comorbidities, but correlated with childhood hyperactivity. In a complementary analysis using principal component analysis with Diagnostic and Statistical Manual of Mental Disorders, Fourth Edition ADHD criteria, revised NEO Personality Inventory, Imp, Vent, and PRS, we identified three ADHD subtypes. These are an impulsive–neurotic type, an adventurous–hyperactive type with a stronger genetic component, and an anxious–inattentive type. Our study thus suggests the importance of adventurousness and the differential consideration of impulsivity in ADHD. The genetic risk is distributed differently between these subtypes, which underlines the importance of clinically motivated subtyping. Impulsivity subtyping might give insights into the organization of comorbid disorders in ADHD and different genetic background.