Convergent functional genomics of schizophrenia: from comprehensive understanding to genetic risk prediction

被引:324
作者
Ayalew, M. [1 ,2 ]
Le-Niculescu, H. [1 ]
Levey, D. F. [1 ]
Jain, N. [1 ]
Changala, B. [1 ]
Patel, S. D. [1 ]
Winiger, E. [1 ]
Breier, A. [1 ]
Shekhar, A. [1 ]
Amdur, R. [3 ]
Koller, D. [4 ]
Nurnberger, J. I. [1 ]
Corvin, A. [5 ]
Geyer, M. [6 ]
Tsuang, M. T. [6 ]
Salomon, D. [7 ]
Schork, N. J. [7 ]
Fanous, A. H. [3 ]
O'Donovan, M. C. [8 ]
Niculescu, A. B. [1 ,2 ]
机构
[1] Indiana Univ Sch Med, Dept Psychiat, Indianapolis, IN 46202 USA
[2] Indianapolis VA Med Ctr, Indianapolis, IN 46202 USA
[3] Washington DC VA Med Ctr, Washington, DC USA
[4] Indiana Univ Sch Med, Dept Med & Mol Genet, Indianapolis, IN 46202 USA
[5] Trinity Coll Dublin, Dept Psychiat, Dublin, Ireland
[6] Univ Calif San Diego, Dept Psychiat, La Jolla, CA 92093 USA
[7] Scripps Res Inst, Dept Mol & Expt Med, La Jolla, CA 92037 USA
[8] Cardiff Univ, Dept Psychol Med, Cardiff, S Glam, Wales
关键词
biomarkers; convergent functional genomics; genetic risk prediction; pathways; schizophrenia; DORSOLATERAL PREFRONTAL CORTEX; MESSENGER-RNA EXPRESSION; CAUSES DIFFERENTIAL EXPRESSION; ANTERIOR CINGULATE CORTEX; FAMILY-BASED ASSOCIATION; SUPERIOR TEMPORAL GYRUS; PROTEIN SIGNALING 4; SERUM BDNF LEVELS; SDY MUTANT MICE; BIPOLAR DISORDER;
D O I
10.1038/mp.2012.37
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
We have used a translational convergent functional genomics (CFG) approach to identify and prioritize genes involved in schizophrenia, by gene-level integration of genome-wide association study data with other genetic and gene expression studies in humans and animal models. Using this polyevidence scoring and pathway analyses, we identify top genes (DISC1, TCF4, MBP, MOBP, NCAM1, NRCAM, NDUFV2, RAB18, as well as ADCYAP1, BDNF, CNR1, COMT, DRD2, DTNBP1, GAD1, GRIA1, GRIN2B, HTR2A, NRG1, RELN, SNAP-25, TNIK), brain development, myelination, cell adhesion, glutamate receptor signaling, G-protein-coupled receptor signaling and cAMP-mediated signaling as key to pathophysiology and as targets for therapeutic intervention. Overall, the data are consistent with a model of disrupted connectivity in schizophrenia, resulting from the effects of neurodevelopmental environmental stress on a background of genetic vulnerability. In addition, we show how the top candidate genes identified by CFG can be used to generate a genetic risk prediction score (GRPS) to aid schizophrenia diagnostics, with predictive ability in independent cohorts. The GRPS also differentiates classic age of onset schizophrenia from early onset and late-onset disease. We also show, in three independent cohorts, two European American and one African American, increasing overlap, reproducibility and consistency of findings from single-nucleotide polymorphisms to genes, then genes prioritized by CFG, and ultimately at the level of biological pathways and mechanisms. Finally, we compared our top candidate genes for schizophrenia from this analysis with top candidate genes for bipolar disorder and anxiety disorders from previous CFG analyses conducted by us, as well as findings from the fields of autism and Alzheimer. Overall, our work maps the genomic and biological landscape for schizophrenia, providing leads towards a better understanding of illness, diagnostics and therapeutics. It also reveals the significant genetic overlap with other major psychiatric disorder domains, suggesting the need for improved nosology.
引用
收藏
页码:887 / 905
页数:19
相关论文
共 289 条
[121]   A dominant mutation in Snap25 causes impaired vesicle trafficking, sensorimotor gating, and ataxia in the blind-drunk mouse [J].
Jeans, Alexander F. ;
Oliver, Peter L. ;
Johnson, Reuben ;
Capogna, Marco ;
Vikman, Jenny ;
Molnar, Zoltan ;
Babbs, Arran ;
Partridge, Christopher J. ;
Salehi, Albert ;
Bengtsson, Martin ;
Eliasson, Lena ;
Rorsman, Patrik ;
Davies, Kay E. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2007, 104 (07) :2431-2436
[122]   A Comparative Proteomics Analysis of Rat Mitochondria from the Cerebral Cortex and Hippocampus in Response to Antipsychotic Medications [J].
Ji, Baohu ;
La, Yujuan ;
Gao, Linghan ;
Zhu, Hui ;
Tian, Nan ;
Zhang, Ming ;
Yang, Yifeng ;
Zhao, Xinzhi ;
Tang, Ruqi ;
Ma, Gang ;
Zhou, Jian ;
Meng, Junwei ;
Ma, Jie ;
Zhang, Zhao ;
Li, Huafang ;
Feng, Guoyin ;
Wang, Yujiong ;
He, Lin ;
Wan, Chunling .
JOURNAL OF PROTEOME RESEARCH, 2009, 8 (07) :3633-3641
[123]   SZGR: a comprehensive schizophrenia gene resource [J].
Jia, P. ;
Sun, J. ;
Guo, A. Y. ;
Zhao, Z. .
MOLECULAR PSYCHIATRY, 2010, 15 (05) :453-462
[124]   Altered expression of hippocampal dentate granule neuron genes in a mouse model of human 22q11 deletion syndrome [J].
Jurata, Linda W. ;
Gallagher, Paul ;
Lemire, Andrew L. ;
Charles, Vinod ;
Brockman, Jeffrey A. ;
Illingworth, Elizabeth Lindsay ;
Altar, C. Anthony .
SCHIZOPHRENIA RESEARCH, 2006, 88 (1-3) :251-259
[125]   Association Analysis of Schizophrenia on 18 Genes Involved in Neuronal Migration: MDGA1 as a New Susceptibility Gene [J].
Kahler, Anna K. ;
Djurovic, Srdjan ;
Kulle, Bettina ;
Jonsson, Erik G. ;
Agartz, Ingrid ;
Hall, Hakan ;
Opjordsmoen, Stein ;
Jakobsen, Klaus D. ;
Hansen, Thomas ;
Melle, Ingrid ;
Werge, Thomas ;
Steen, Vidar M. ;
Andreassen, Ole A. .
AMERICAN JOURNAL OF MEDICAL GENETICS PART B-NEUROPSYCHIATRIC GENETICS, 2008, 147B (07) :1089-1100
[126]   Association Study of PDE48 Gene Variants in Scandinavian Schizophrenia and Bipolar Disorder Multicenter Case-Control Samples [J].
Kahler, Anna K. ;
Otnaess, Mona K. ;
Wirgenes, Katrine V. ;
Hansen, Thomas ;
Jonsson, Erik G. ;
Agartz, Ingrid ;
Hall, Hakan ;
Werge, Thomas ;
Morken, Gunnar ;
Mors, Ole ;
Mellerup, Erling ;
Dam, Henrik ;
Koefod, Pernille ;
Melle, Ingrid ;
Steen, Vidar M. ;
Andreassen, Ole A. ;
Djurovic, Srdjan .
AMERICAN JOURNAL OF MEDICAL GENETICS PART B-NEUROPSYCHIATRIC GENETICS, 2010, 153B (01) :86-96
[127]   Phencyclidine-induced changes in rat cortical gene expression identified by microarray analysis: implications for schizophrenia [J].
Kaiser, S ;
Foltz, LA ;
George, CA ;
Kirkwood, SC ;
Bemis, KG ;
Lin, X ;
Gelbert, LM ;
Nisenbaum, LK .
NEUROBIOLOGY OF DISEASE, 2004, 16 (01) :220-235
[128]   Interaction between FEZ1 and DISC1 in Regulation of Neuronal Development and Risk for Schizophrenia [J].
Kang, Eunchai ;
Burdick, Katherine E. ;
Kim, Ju Young ;
Duan, Xin ;
Guo, Junjie U. ;
Sailor, Kurt A. ;
Jung, Dhong-Eun ;
Ganesan, Sundar ;
Choi, Sungkyung ;
Pradhan, Dennis ;
Lu, Bai ;
Avramopoulos, Dimitrios ;
Christian, Kimberly ;
Malhotra, Anil K. ;
Song, Hongjun ;
Ming, Guo-li .
NEURON, 2011, 72 (04) :559-571
[129]   Alterations in synaptic proteins and their encoding mRNAs in prefrontal cortex in schizophrenia: a possible neurochemical basis for 'hypofrontality' [J].
Karson, CN ;
Mrak, RE ;
Schluterman, KO ;
Sturner, WQ ;
Sheng, JG ;
Griffin, WST .
MOLECULAR PSYCHIATRY, 1999, 4 (01) :39-45
[130]   Variations in myelin and oligodendrocyte-related gene expression across multiple brain regions in schizophrenia: A gene ontology study [J].
Katsel, P ;
Davis, KL ;
Haroutunian, V .
SCHIZOPHRENIA RESEARCH, 2005, 79 (2-3) :157-173