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Leveraging mouse chromatin data for heritability enrichment informs common disease architecture and reveals cortical layer contributions to schizophrenia

机译:利用遗传性丰富的小鼠染色质数据提供常见的疾病建筑并揭示皮质层对精神分裂症的贡献

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摘要

Genome-wide association studies have implicated thousands of noncoding variants across common human phenotypes. However, they cannot directly inform the cellular context in which disease-associated variants act. Here, we use open chromatin profiles from discrete mouse cell populations to address this challenge. We applied stratified linkage disequilibrium score regression and evaluated heritability enrichment in 64 genome-wide association studies, emphasizing schizophrenia. We provide evidence that mouse-derived human open chromatin profiles can serve as powerful proxies for difficult to obtain human cell populations, facilitating the illumination of common disease heritability enrichment across an array of human phenotypes. We demonstrate that signatures from discrete subpopulations of cortical excitatory and inhibitory neurons are significantly enriched for schizophrenia heritability with maximal enrichment in cortical layer V excitatory neurons. We also show that differences between schizophrenia and bipolar disorder are concentrated in excitatory neurons in cortical layers II-III, IV, and V, as well as the dentate gyrus. Finally, we leverage these data to fine-map variants in 177 schizophrenia loci nominating variants in 104/177. We integrate these data with transcription factor binding site, chromatin interaction, and validated enhancer data, placing variants in the cellular context where they may modulate risk.
机译:基因组关联研究涉及普遍存在的人类表型的成千上万的非编码变体。但是,它们不能直接通知疾病相关变体的蜂窝环境。在这里,我们使用来自离散的小鼠细胞群的开放染色质谱来解决这一挑战。我们应用分层连锁不平衡分数回归和评价64种基因组协会研究中的遗传性富集,强调精神分裂症。我们提供的证据表明,小鼠衍生的人开放的染色质曲线可以作为难以获得人类细胞群的强大代理,促进在一系列人类表型中的常见疾病遗传性富集的照明。我们证明,从皮质层V兴奋神经元中具有最大富集的精神分裂症遗传性,显着富集了来自皮质兴奋性和抑制性神经元的离散亚群的签名。我们还表明,精神分裂症和双相情感障碍的差异集中在皮质层II-III,IV和V的兴奋性神经元中,以及牙齿过滤器。最后,我们利用这些数据在104/177中的177个精神分裂症基因座提名变种中的微观地图变体。我们将这些数据与转录因子结合位点,染色质相互作用和验证的增强剂数据集成,将变体放置在蜂窝环境中,他们可以调节风险。

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