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位于[具体基因名称]和[具体基因名称]附近的一个与功能性精神分裂症相关的基因变异。 (你原文中“and”前后缺少具体基因信息,我只能按格式补充完整,请根据实际情况修改)

A Functional Schizophrenia-associated genetic variant near the and genes.

作者信息

Wahbeh Marah H, Boyd Rachel J, Yovo Christian, Rike Bailey, McCallion Andrew S, Avramopoulos Dimitrios

机构信息

McKusick-Nathans Department of Genetic Medicine, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

Department of Medicine, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

出版信息

bioRxiv. 2023 Dec 18:2023.12.18.570831. doi: 10.1101/2023.12.18.570831.

Abstract

Recent collaborative genome wide association studies (GWAS) have identified >200 independent loci contributing to risk for schizophrenia (SCZ). The genes closest to these loci have diverse functions, supporting the potential involvement of multiple relevant biological processes; yet there is no direct evidence that individual variants are functional or directly linked to specific genes. Nevertheless, overlap with certain epigenetic marks suggest that most GWAS-implicated variants are regulatory. Based on the strength of association with SCZ and the presence of regulatory epigenetic marks, we chose one such variant near and , rs4129585, to test for functional potential and assay differences that may drive the pathogenicity of the risk allele. We observed that the variant-containing sequence drives reporter expression in relevant neuronal populations in zebrafish. Next, we introduced each allele into human induced pluripotent cells and differentiated 4 isogenic clones homozygous for the risk allele and 5 clones homozygous for the non-risk allele into neural precursor cells. Employing RNA-seq, we found that the two alleles yield significant transcriptional differences in the expression of 109 genes at FDR <0.05 and 259 genes at FDR <0.1. We demonstrate that these genes are highly interconnected in pathways enriched for synaptic proteins, axon guidance, and regulation of synapse assembly. Exploration of genes near rs4129585 suggests that this variant does not regulate transcripts, as previously thought, but may regulate the neighboring , a regulator of synaptogenesis. Our results suggest that rs4129585 is a functional common variant that functions in specific pathways likely involved in SCZ risk.

摘要

近期的全基因组关联研究(GWAS)协作组已经确定了超过200个独立位点与精神分裂症(SCZ)风险相关。最接近这些位点的基因具有多种功能,这支持了多个相关生物学过程可能参与其中;然而,尚无直接证据表明单个变异具有功能或直接与特定基因相关联。尽管如此,与某些表观遗传标记的重叠表明,大多数GWAS相关变异具有调控作用。基于与SCZ的关联强度以及调控性表观遗传标记的存在,我们选择了位于[具体基因1]和[具体基因2]附近的一个这样的变异rs4129585,来测试其功能潜力并分析可能导致风险等位基因致病性的差异。我们观察到含有该变异的序列在斑马鱼的相关神经元群体中驱动报告基因表达。接下来,我们将每个等位基因导入人诱导多能干细胞,并将4个纯合风险等位基因的同基因克隆和5个纯合非风险等位基因的同基因克隆分化为神经前体细胞。利用RNA测序,我们发现这两个等位基因在错误发现率(FDR)<0.05时,109个基因的表达存在显著转录差异,在FDR<0.1时,259个基因存在显著转录差异。我们证明这些基因在富含突触蛋白、轴突导向和突触组装调控的通路中高度相互连接。对rs4129585附近基因的探索表明,该变异并不像之前认为的那样调控[基因3]转录本,而是可能调控邻近的[基因4],[基因4]是一种突触发生调节因子。我们的结果表明,rs4129585是一个功能性常见变异,在可能与SCZ风险相关的特定通路中发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a098/10769312/86e8b4e0ae28/nihpp-2023.12.18.570831v1-f0001.jpg

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