TY - JOUR A1 - Erhardt, A. A1 - Akula, N. A1 - Schumacher, J. A1 - Czamara, D. A1 - Karbalai, N. A1 - Müller-Myhsok, B. A1 - Mors, O. A1 - Borglum, A. A1 - Kristensen, A. S. A1 - Woldbye, D. P. D. A1 - Koefoed, P. A1 - Eriksson, E. A1 - Maron, E. A1 - Metspalu, A. A1 - Nurnberger, J. A1 - Philibert, R. A. A1 - Kennedy, J. A1 - Domschke, K. A1 - Reif, A. A1 - Deckert, J. A1 - Otowa, T. A1 - Kawamura, Y. A1 - Kaiya, H. A1 - Okazaki, Y. A1 - Tanii, H. A1 - Tokunaga, K. A1 - Sasaki, T. A1 - Ioannidis, J. P. A. A1 - McMahon, F. J. A1 - Binder, E. B. T1 - Replication and meta-analysis of TMEM132D gene variants in panic disorder JF - Translational Psychiatry N2 - A recent genome-wide association study in patients with panic disorder (PD) identified a risk haplotype consisting of two single-nucleotide polymorphisms (SNPs) (rs7309727 and rs11060369) located in intron 3 of TMEM132D to be associated with PD in three independent samples. Now we report a subsequent confirmation study using five additional PD case-control samples (n = 1670 cases and n 2266 controls) assembled as part of the Panic Disorder International Consortium (PanIC) study for a total of 2678 cases and 3262 controls in the analysis. In the new independent samples of European ancestry (EA), the association of rs7309727 and the risk haplotype rs7309727-rs11060369 was, indeed, replicated, with the strongest signal coming from patients with primary PD, that is, patients without major psychiatric comorbidities (n 1038 cases and n 2411 controls). This finding was paralleled by the results of the meta-analysis across all samples, in which the risk haplotype and rs7309727 reached P-levels of P = 1.4e-8 and P = 1.1e-8, respectively, when restricting the samples to individuals of EA with primary PD. In the Japanese sample no associations with PD could be found. The present results support the initial finding that TMEM132D gene contributes to genetic susceptibility for PD in individuals of EA. Our results also indicate that patient ascertainment and genetic background could be important sources of heterogeneity modifying this association signal in different populations. KW - candidate gene KW - genome-wide association KW - Japanese population Y1 - 2012 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-133324 VL - 2 IS - e156 ER - TY - JOUR A1 - Straube, B. A1 - Reif, A. A1 - Richter, J. A1 - Lueken, U. A1 - Weber, H. A1 - Arolt, V. A1 - Jansen, A. A1 - Zwanzger, P. A1 - Domschke, K. A1 - Pauli, P. A1 - Konrad, C. A1 - Gerlach, A. L. A1 - Lang, T. A1 - Fydrich, T. A1 - Alpers, G. W. A1 - Stroehle, A. A1 - Wittmann, A. A1 - Pfleiderer, B. A1 - Wittchen, H.-U. A1 - Hamm, A. A1 - Deckert, J. A1 - Kircher, T. T1 - The functional - 1019C/G HTR1A polymorphism and mechanisms of fear JF - Translational Psychiatry N2 - Serotonin receptor 1A gene (HTR1A) knockout mice show pronounced defensive behaviour and increased fear conditioning to ambiguous conditioned stimuli. Such behaviour is a hallmark of pathological human anxiety, as observed in panic disorder with agoraphobia (PD/AG). Thus, variations in HTR1A might contribute to neurophysiological differences within subgroups of PD/AG patients. Here, we tested this hypothesis by combining genetic with behavioural techniques and neuroimaging. In a clinical multicentre trial, patients with PD/AG received 12 sessions of manualized cognitive-behavioural therapy (CBT) and were genotyped for HTR1A rs6295. In four subsamples of this multicentre trial, exposure behaviour (n = 185), defensive reactivity measured using a behavioural avoidance test (BAT; before CBT: n = 245; after CBT: n = 171) and functional magnetic resonance imaging (fMRI) data during fear conditioning were acquired before and after CBT (n = 39). HTR1A risk genotype (GG) carriers more often escaped during the BAT before treatment. Exploratory fMRI results suggest increased activation of the amygdala in response to threat as well as safety cues before and after treatment in GG carriers. Furthermore, GG carriers demonstrated reduced effects of CBT on differential conditioning in regions including the bilateral insulae and the anterior cingulate cortex. Finally, risk genotype carriers demonstrated reduced self-initiated exposure behaviour to aversive situations. This study demonstrates the effect of HTR1A variation on defensive behaviour, amygdala activity, CBT-induced neural plasticity and normalization of defence behaviour in PD/AG. Our results, therefore, translate evidence from animal studies to humans and suggest a central role for HTR1A in differentiating subgroups of patients with anxiety disorders. KW - randomized-controlled trial KW - panic disorder KW - 5-HT1A receptor KW - defensive reactivity KW - major depression KW - cognitive-behavioral therapy KW - receptor gene polymorphism KW - C(-1019)G polymorphism KW - anxiety disorders KW - serotonin(1A) receptor Y1 - 2014 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-114369 SN - 2158-3188 VL - 4 ER - TY - JOUR A1 - Ziegler, C. A1 - Richter, J. A1 - Mahr, M. A1 - Gajewska, A. A1 - Schiele, M.A. A1 - Gehrmann, A. A1 - Schmidt, B. A1 - Lesch, K.-P. A1 - Lang, T. A1 - Helbig-Lang, S. A1 - Pauli, P. A1 - Kircher, T. A1 - Reif, A. A1 - Rief, W. A1 - Vossbeck-Elsebusch, A.N. A1 - Arolt, V. A1 - Wittchen, H.-U. A1 - Hamm, A.O. A1 - Deckert, J. A1 - Domschke, K. T1 - MAOA gene hypomethylation in panic disorder-reversibility of an epigenetic risk pattern by psychotherapy JF - Translational Psychiatry N2 - Epigenetic signatures such as methylation of the monoamine oxidase A (MAOA) gene have been found to be altered in panic disorder (PD). Hypothesizing temporal plasticity of epigenetic processes as a mechanism of successful fear extinction, the present psychotherapy-epigenetic study for we believe the first time investigated MAOA methylation changes during the course of exposure-based cognitive behavioral therapy (CBT) in PD. MAOA methylation was compared between N=28 female Caucasian PD patients (discovery sample) and N=28 age- and sex-matched healthy controls via direct sequencing of sodium bisulfite-treated DNA extracted from blood cells. MAOA methylation was furthermore analyzed at baseline (T0) and after a 6-week CBT (T1) in the discovery sample parallelized by a waiting time in healthy controls, as well as in an independent sample of female PD patients (N=20). Patients exhibited lower MAOA methylation than healthy controls (P<0.001), and baseline PD severity correlated negatively with MAOA methylation (P=0.01). In the discovery sample, MAOA methylation increased up to the level of healthy controls along with CBT response (number of panic attacks; T0-T1: +3.37±2.17%), while non-responders further decreased in methylation (-2.00±1.28%; P=0.001). In the replication sample, increases in MAOA methylation correlated with agoraphobic symptom reduction after CBT (P=0.02-0.03). The present results support previous evidence for MAOA hypomethylation as a PD risk marker and suggest reversibility of MAOA hypomethylation as a potential epigenetic correlate of response to CBT. The emerging notion of epigenetic signatures as a mechanism of action of psychotherapeutic interventions may promote epigenetic patterns as biomarkers of lasting extinction effects. KW - Adult KW - Case-Control Studies KW - Cognitive Therapy KW - DNA Methylation KW - Epigenesis KW - Genetic KW - Female KW - Humans KW - Monoamine Oxidase/genetics KW - Panic Disorder/genetics KW - Panic Disorder/therapy KW - Sequence Analysis KW - DNA Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-164422 IS - 6 ER - TY - JOUR A1 - Zayats, T A1 - Jacobsen, KK A1 - Kleppe, R A1 - Jacob, CP A1 - Kittel-Schneider, S A1 - Ribasés, M A1 - Ramos-Quiroga, JA A1 - Richarte, V A1 - Casas, M A1 - Mota, NR A1 - Grevet, EH A1 - Klein, M A1 - Corominas, J A1 - Bralten, J A1 - Galesloot, T A1 - Vasquez, AA A1 - Herms, S A1 - Forstner, AJ A1 - Larsson, H A1 - Breen, G A1 - Asherson, P A1 - Gross-Lesch, S A1 - Lesch, KP A1 - Cichon, S A1 - Gabrielsen, MB A1 - Holmen, OL A1 - Bau, CHD A1 - Buitelaar, J A1 - Kiemeney, L A1 - Faraone, SV A1 - Cormand, B A1 - Franke, B A1 - Reif, A A1 - Haavik, J A1 - Johansson, S T1 - Exome chip analyses in adult attention deficit hyperactivity disorder JF - Translational Psychiatry N2 - Attention-deficit/hyperactivity disorder (ADHD) is a highly heritable childhood-onset neuropsychiatric condition, often persisting into adulthood. The genetic architecture of ADHD, particularly in adults, is largely unknown. We performed an exome-wide scan of adult ADHD using the Illumina Human Exome Bead Chip, which interrogates over 250 000 common and rare variants. Participants were recruited by the International Multicenter persistent ADHD CollaboraTion (IMpACT). Statistical analyses were divided into 3 steps: (1) gene-level analysis of rare variants (minor allele frequency (MAF)<1%); (2) single marker association tests of common variants (MAF⩾1%), with replication of the top signals; and (3) pathway analyses. In total, 9365 individuals (1846 cases and 7519 controls) were examined. Replication of the most associated common variants was attempted in 9847 individuals (2077 cases and 7770 controls) using fixed-effects inverse variance meta-analysis. With a Bonferroni-corrected significance level of 1.82E−06, our analyses of rare coding variants revealed four study-wide significant loci: 6q22.1 locus (P=4.46E−08), where NT5DC1 and COL10A1 reside; the SEC23IP locus (P=6.47E−07); the PSD locus (P=7.58E−08) and ZCCHC4 locus (P=1.79E−06). No genome-wide significant association was observed among the common variants. The strongest signal was noted at rs9325032 in PPP2R2B (odds ratio=0.81, P=1.61E−05). Taken together, our data add to the growing evidence of general signal transduction molecules (NT5DC1, PSD, SEC23IP and ZCCHC4) having an important role in the etiology of ADHD. Although the biological implications of these findings need to be further explored, they highlight the possible role of cellular communication as a potential core component in the development of both adult and childhood forms of ADHD. KW - chip analyses KW - ADHD KW - adulthood KW - Illumina Human Exome Bead Chip Y1 - 2016 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-168297 VL - 6 IS - e923 ER - TY - JOUR A1 - Lueken, U A1 - Kuhn, M A1 - Yang, Y A1 - Straube, B A1 - Kircher, T A1 - Wittchen, H-U A1 - Pfleiderer, B A1 - Arolt, V A1 - Wittmann, A A1 - Ströhle, A A1 - Weber, H A1 - Reif, A A1 - Domschke, K A1 - Deckert, J A1 - Lonsdorf, TB T1 - Modulation of defensive reactivity by GLRB allelic variation: converging evidence from an intermediate phenotype approach JF - Translational Psychiatry N2 - Representing a phylogenetically old and very basic mechanism of inhibitory neurotransmission, glycine receptors have been implicated in the modulation of behavioral components underlying defensive responding toward threat. As one of the first findings being confirmed by genome-wide association studies for the phenotype of panic disorder and agoraphobia, allelic variation in a gene coding for the glycine receptor beta subunit (GLRB) has recently been associated with increased neural fear network activation and enhanced acoustic startle reflexes. On the basis of two independent healthy control samples, we here aimed to further explore the functional significance of the GLRB genotype (rs7688285) by employing an intermediate phenotype approach. We focused on the phenotype of defensive system reactivity across the levels of brain function, structure, and physiology. Converging evidence across both samples was found for increased neurofunctional activation in the (anterior) insular cortex in GLRB risk allele carriers and altered fear conditioning as a function of genotype. The robustness of GLRB effects is demonstrated by consistent findings across different experimental fear conditioning paradigms and recording sites. Altogether, findings provide translational evidence for glycine neurotransmission as a modulator of the brain’s evolutionary old dynamic defensive system and provide further support for a strong, biologically plausible candidate intermediate phenotype of defensive reactivity. As such, glycine-dependent neurotransmission may open up new avenues for mechanistic research on the etiopathogenesis of fear and anxiety disorders. KW - glycine receptor beta subunit KW - neural fear network activation KW - intermediate phenotype approach KW - defensive system reactivity Y1 - 2017 U6 - http://nbn-resolving.de/urn/resolver.pl?urn:nbn:de:bvb:20-opus-182381 VL - 7 IS - e1227 ER -