Person: Jenike, Michael
Email Address
AA Acceptance Date
Birth Date
Research Projects
Organizational Units
Job Title
Last Name
First Name
Name
Search Results
Publication Partitioning the Heritability of Tourette Syndrome and Obsessive Compulsive Disorder Reveals Differences in Genetic Architecture
(Public Library of Science, 2013) Davis, Lea K.; Yu, Dongmei; Keenan, Clare L.; Gamazon, Eric R.; Konkashbaev, Anuar I.; Derks, Eske M.; Neale, Benjamin; Yang, Jian; Lee, S. Hong; Evans, Patrick; Barr, Cathy L.; Bellodi, Laura; Benarroch, Fortu; Berrio, Gabriel Bedoya; Bienvenu, Oscar J.; Bloch, Michael H.; Blom, Rianne M.; Bruun, Ruth D.; Budman, Cathy L.; Camarena, Beatriz; Campbell, Desmond; Cappi, Carolina; Cardona Silgado, Julio C.; Cath, Danielle C.; Cavallini, Maria C.; Chavira, Denise A.; Chouinard, Sylvain; Conti, David V.; Cook, Edwin H.; Coric, Vladimir; Cullen, Bernadette A.; Deforce, Dieter; Delorme, Richard; Dion, Yves; Edlund, Christopher K.; Egberts, Karin; Falkai, Peter; Fernandez, Thomas V.; Gallagher, Patience J.; Garrido, Helena; Geller, Daniel; Girard, Simon L.; Grabe, Hans J.; Grados, Marco A.; Greenberg, Benjamin D.; Gross-Tsur, Varda; Haddad, Stephen; Heiman, Gary A.; Hemmings, Sian M. J.; Hounie, Ana G.; Illmann, Cornelia; Jankovic, Joseph; Jenike, Michael; Kennedy, James L.; King, Robert A.; Kremeyer, Barbara; Kurlan, Roger; Lanzagorta, Nuria; Leboyer, Marion; Leckman, James F.; Lennertz, Leonhard; Liu, Chunyu; Lochner, Christine; Lowe, Thomas L.; Macciardi, Fabio; McCracken, James T.; McGrath, Lauren M.; Mesa Restrepo, Sandra C.; Moessner, Rainald; Morgan, Jubel; Muller, Heike; Murphy, Dennis L.; Naarden, Allan L.; Ochoa, William Cornejo; Ophoff, Roel A.; Osiecki, Lisa; Pakstis, Andrew J.; Pato, Michele T.; Pato, Carlos N.; Piacentini, John; Pittenger, Christopher; Pollak, Yehuda; Rauch, Scott L.; Renner, Tobias J.; Reus, Victor I.; Richter, Margaret A.; Riddle, Mark A.; Robertson, Mary M.; Romero, Roxana; Rosàrio, Maria C.; Rosenberg, David; Rouleau, Guy A.; Ruhrmann, Stephan; Ruiz-Linares, Andres; Sampaio, Aline S.; Samuels, Jack; Sandor, Paul; Sheppard, Brooke; Singer, Harvey S.; Smit, Jan H.; Stein, Dan J.; Strengman, E.; Tischfield, Jay A.; Valencia Duarte, Ana V.; Vallada, Homero; Van Nieuwerburgh, Filip; Veenstra-VanderWeele, Jeremy; Walitza, Susanne; Wang, Ying; Wendland, Jens R.; Westenberg, Herman G. M.; Shugart, Yin Yao; Miguel, Euripedes C.; McMahon, William; Wagner, Michael; Nicolini, Humberto; Posthuma, Danielle; Hanna, Gregory L.; Heutink, Peter; Denys, Damiaan; Arnold, Paul D.; Oostra, Ben A.; Nestadt, Gerald; Freimer, Nelson B.; Pauls, David; Wray, Naomi R.; Stewart, S. Evelyn; Mathews, Carol A.; Knowles, James A.; Cox, Nancy J.; Scharf, JeremiahThe direct estimation of heritability from genome-wide common variant data as implemented in the program Genome-wide Complex Trait Analysis (GCTA) has provided a means to quantify heritability attributable to all interrogated variants. We have quantified the variance in liability to disease explained by all SNPs for two phenotypically-related neurobehavioral disorders, obsessive-compulsive disorder (OCD) and Tourette Syndrome (TS), using GCTA. Our analysis yielded a heritability point estimate of 0.58 (se = 0.09, p = 5.64e-12) for TS, and 0.37 (se = 0.07, p = 1.5e-07) for OCD. In addition, we conducted multiple genomic partitioning analyses to identify genomic elements that concentrate this heritability. We examined genomic architectures of TS and OCD by chromosome, MAF bin, and functional annotations. In addition, we assessed heritability for early onset and adult onset OCD. Among other notable results, we found that SNPs with a minor allele frequency of less than 5% accounted for 21% of the TS heritability and 0% of the OCD heritability. Additionally, we identified a significant contribution to TS and OCD heritability by variants significantly associated with gene expression in two regions of the brain (parietal cortex and cerebellum) for which we had available expression quantitative trait loci (eQTLs). Finally we analyzed the genetic correlation between TS and OCD, revealing a genetic correlation of 0.41 (se = 0.15, p = 0.002). These results are very close to previous heritability estimates for TS and OCD based on twin and family studies, suggesting that very little, if any, heritability is truly missing (i.e., unassayed) from TS and OCD GWAS studies of common variation. The results also indicate that there is some genetic overlap between these two phenotypically-related neuropsychiatric disorders, but suggest that the two disorders have distinct genetic architectures.
Publication Integrating evolutionary and regulatory information with a multispecies approach implicates genes and pathways in obsessive-compulsive disorder
(Nature Publishing Group UK, 2017) Noh, Hyun Ji; Tang, Ruqi; Flannick, Jason; O’Dushlaine, Colm; Swofford, Ross; Howrigan, Daniel; Genereux, Diane P.; Johnson, Jeremy; van Grootheest, Gerard; Grünblatt, Edna; Andersson, Erik; Djurfeldt, Diana R.; Patel, Paresh D.; Koltookian, Michele; M. Hultman, Christina; Pato, Michele T.; Pato, Carlos N.; Rasmussen, Steven A.; Jenike, Michael; Hanna, Gregory L.; Stewart, S. Evelyn; Knowles, James A.; Ruhrmann, Stephan; Grabe, Hans-Jörgen; Wagner, Michael; Rück, Christian; Mathews, Carol A.; Walitza, Susanne; Cath, Daniëlle C.; Feng, Guoping; Karlsson, Elinor K.; Lindblad-Toh, KerstinObsessive-compulsive disorder is a severe psychiatric disorder linked to abnormalities in glutamate signaling and the cortico-striatal circuit. We sequenced coding and regulatory elements for 608 genes potentially involved in obsessive-compulsive disorder in human, dog, and mouse. Using a new method that prioritizes likely functional variants, we compared 592 cases to 560 controls and found four strongly associated genes, validated in a larger cohort. NRXN1 and HTR2A are enriched for coding variants altering postsynaptic protein-binding domains. CTTNBP2 (synapse maintenance) and REEP3 (vesicle trafficking) are enriched for regulatory variants, of which at least six (35%) alter transcription factor-DNA binding in neuroblastoma cells. NRXN1 achieves genome-wide significance (p = 6.37 × 10−11) when we include 33,370 population-matched controls. Our findings suggest synaptic adhesion as a key component in compulsive behaviors, and show that targeted sequencing plus functional annotation can identify potentially causative variants, even when genomic data are limited.