Jonathan L. Hess, Manuel Mattheisen, the Schizophrenia Working Group of the Psychiatric Genomics Consortium, Tiffany A. Greenwood, Ming T. Tsuang, Howard J. Edenberg, Peter Holmans, Stephen V. Faraone, Stephen J. Glatt
{"title":"多基因恢复能力评分调节了精神分裂症的遗传风险:来自精神病学基因组学协会的18090例病例和28114例对照的复制。","authors":"Jonathan L. Hess, Manuel Mattheisen, the Schizophrenia Working Group of the Psychiatric Genomics Consortium, Tiffany A. Greenwood, Ming T. Tsuang, Howard J. Edenberg, Peter Holmans, Stephen V. Faraone, Stephen J. Glatt","doi":"10.1002/ajmg.b.32957","DOIUrl":null,"url":null,"abstract":"<p>Identifying heritable factors that moderate the genetic risk for schizophrenia (SCZ) could help clarify why some individuals remain unaffected despite having relatively high genetic liability. Previously, we developed a framework to mine genome-wide association (GWAS) data for common genetic variants that protect high-risk unaffected individuals from SCZ, leading to derivation of the first-ever “polygenic resilience score” for SCZ (resilient controls <i>n</i> = 3786; polygenic risk score-matched SCZ cases <i>n</i> = 18,619). Here, we performed a replication study to verify the moderating effect of our polygenic resilience score on SCZ risk (OR = 1.09, <i>p</i> = 4.03 × 10<sup>−5</sup>) using newly released GWAS data from 23 independent case–control studies collated by the Psychiatric Genomics Consortium (PGC) (resilient controls <i>n</i> = 2821; polygenic risk score-matched SCZ cases <i>n</i> = 5150). Additionally, we sought to optimize our polygenic resilience-scoring formula to improve subsequent modeling of resilience to SCZ and other complex disorders. We found significant replication of the polygenic resilience score, and found that strict pruning of SNPs based on linkage disequilibrium to known risk SNPs and their linked loci optimizes the performance of the polygenic resilience score.</p>","PeriodicalId":7673,"journal":{"name":"American Journal of Medical Genetics Part B: Neuropsychiatric Genetics","volume":"195 2","pages":""},"PeriodicalIF":1.6000,"publicationDate":"2023-08-08","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"A polygenic resilience score moderates the genetic risk for schizophrenia: Replication in 18,090 cases and 28,114 controls from the Psychiatric Genomics Consortium\",\"authors\":\"Jonathan L. Hess, Manuel Mattheisen, the Schizophrenia Working Group of the Psychiatric Genomics Consortium, Tiffany A. Greenwood, Ming T. Tsuang, Howard J. Edenberg, Peter Holmans, Stephen V. Faraone, Stephen J. 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Here, we performed a replication study to verify the moderating effect of our polygenic resilience score on SCZ risk (OR = 1.09, <i>p</i> = 4.03 × 10<sup>−5</sup>) using newly released GWAS data from 23 independent case–control studies collated by the Psychiatric Genomics Consortium (PGC) (resilient controls <i>n</i> = 2821; polygenic risk score-matched SCZ cases <i>n</i> = 5150). Additionally, we sought to optimize our polygenic resilience-scoring formula to improve subsequent modeling of resilience to SCZ and other complex disorders. 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A polygenic resilience score moderates the genetic risk for schizophrenia: Replication in 18,090 cases and 28,114 controls from the Psychiatric Genomics Consortium
Identifying heritable factors that moderate the genetic risk for schizophrenia (SCZ) could help clarify why some individuals remain unaffected despite having relatively high genetic liability. Previously, we developed a framework to mine genome-wide association (GWAS) data for common genetic variants that protect high-risk unaffected individuals from SCZ, leading to derivation of the first-ever “polygenic resilience score” for SCZ (resilient controls n = 3786; polygenic risk score-matched SCZ cases n = 18,619). Here, we performed a replication study to verify the moderating effect of our polygenic resilience score on SCZ risk (OR = 1.09, p = 4.03 × 10−5) using newly released GWAS data from 23 independent case–control studies collated by the Psychiatric Genomics Consortium (PGC) (resilient controls n = 2821; polygenic risk score-matched SCZ cases n = 5150). Additionally, we sought to optimize our polygenic resilience-scoring formula to improve subsequent modeling of resilience to SCZ and other complex disorders. We found significant replication of the polygenic resilience score, and found that strict pruning of SNPs based on linkage disequilibrium to known risk SNPs and their linked loci optimizes the performance of the polygenic resilience score.
期刊介绍:
Neuropsychiatric Genetics, Part B of the American Journal of Medical Genetics (AJMG) , provides a forum for experimental and clinical investigations of the genetic mechanisms underlying neurologic and psychiatric disorders. It is a resource for novel genetics studies of the heritable nature of psychiatric and other nervous system disorders, characterized at the molecular, cellular or behavior levels. Neuropsychiatric Genetics publishes eight times per year.