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The Future is The Past: Methylation QTLs in Schizophrenia

机译:未来就是过去:精神分裂症中的甲基化QTL

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摘要

Genome-wide association studies (GWAS) have remarkably advanced insight into the genetic basis of schizophrenia (SCZ). Still, most of the functional variance in disease risk remains unexplained. Hence, there is a growing need to map genetic variability-to-genes-to-functions for understanding the pathophysiology of SCZ and the development of better treatments. Genetic variation can regulate various cellular functions including DNA methylation, an epigenetic mark with important roles in transcription and the mediation of environmental influences. Methylation quantitative trait loci (meQTLs) are derived by mapping levels of DNA methylation in genetically different, genotyped individuals and define loci at which DNA methylation is influenced by genetic variation. Recent evidence points to an abundance of meQTLs in brain tissues whose functional contributions to development and mental diseases are still poorly understood. Interestingly, fetal meQTLs reside in regulatory domains affecting methylome reconfiguration during early brain development and are enriched in loci identified by GWAS for SCZ. Moreover, fetal meQTLs are preserved in the adult brain and could trace early epigenomic deregulation during vulnerable periods. Overall, these findings highlight the role of fetal meQTLs in the genetic risk for and in the possible neurodevelopmental origin of SCZ.
机译:全基因组关联研究(GWAS)对精神分裂症(SCZ)的遗传学基础有了非常深刻的了解。尽管如此,大多数疾病风险的功能差异仍无法解释。因此,越来越需要将遗传变异性映射到功能基因以了解SCZ的病理生理学和开发更好的治疗方法。遗传变异可以调节各种细胞功能,包括DNA甲基化,表观遗传标记,在转录和环境影响的调节中起重要作用。甲基化定量性状基因座(meQTL)是通过绘制遗传上不同的基因型个体中DNA甲基化水平的图而得出的,并定义了基因甲基化会影响DNA甲基化的基因座。最近的证据表明,大脑组织中存在大量的meQTL,其对发育和精神疾病的功能贡献仍知之甚少。有趣的是,胎儿meQTL位于早期大脑发育过程中影响甲基化组重新配置的调节域中,并富含GWAS为SCZ确定的基因座。此外,胎儿的meQTLs保留在成人的大脑中,并且可以追溯到脆弱时期的早期表观基因组失调。总体而言,这些发现突出了胎儿meQTL在SCZ的遗传风险和可能的神经发育起源中的作用。

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