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Using brain cell-type-specific protein interactomes to interpret neurodevelopmental genetic signals in schizophrenia.


ABSTRACT: Genetics have nominated many schizophrenia risk genes and identified convergent signals between schizophrenia and neurodevelopmental disorders. However, functional interpretation of the nominated genes in the relevant brain cell types is often lacking. We executed interaction proteomics for six schizophrenia risk genes that have also been implicated in neurodevelopment in human induced cortical neurons. The resulting protein network is enriched for common variant risk of schizophrenia in Europeans and East Asians, is down-regulated in layer 5/6 cortical neurons of individuals affected by schizophrenia, and can complement fine-mapping and eQTL data to prioritize additional genes in GWAS loci. A sub-network centered on HCN1 is enriched for common variant risk and contains proteins (HCN4 and

SUBMITTER: Hsu YH 

PROVIDER: S-EPMC10189495 | biostudies-literature | 2023 May

REPOSITORIES: biostudies-literature

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