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多发性硬化症的遗传和非遗传因素通过瞬时转录组相互作用。

Multiple sclerosis genetic and non-genetic factors interact through the transient transcriptome.

机构信息

Department of Informatics and Analytics, Dana-Farber Cancer Institute, Boston, MA, USA.

Department of Biological Engineering, Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, MA, USA.

出版信息

Sci Rep. 2022 May 9;12(1):7536. doi: 10.1038/s41598-022-11444-w.

Abstract

A clinically actionable understanding of multiple sclerosis (MS) etiology goes through GWAS interpretation, prompting research on new gene regulatory models. Our previous investigations suggested heterogeneity in etiology components and stochasticity in the interaction between genetic and non-genetic factors. To find a unifying model for this evidence, we focused on the recently mapped transient transcriptome (TT), that is mostly coded by intergenic and intronic regions, with half-life of minutes. Through a colocalization analysis, here we demonstrate that genomic regions coding for the TT are significantly enriched for MS-associated GWAS variants and DNA binding sites for molecular transducers mediating putative, non-genetic, determinants of MS (vitamin D deficiency, Epstein Barr virus latent infection, B cell dysfunction), indicating TT-coding regions as MS etiopathogenetic hotspots. Future research comparing cell-specific transient and stable transcriptomes may clarify the interplay between genetic variability and non-genetic factors causing MS. To this purpose, our colocalization analysis provides a freely available data resource at www.mscoloc.com .

摘要

对多发性硬化症(MS)病因的临床可操作的理解需要通过 GWAS 解释来推动新的基因调控模型的研究。我们之前的研究表明病因成分存在异质性,遗传和非遗传因素之间的相互作用具有随机性。为了找到一个统一的模型来解释这些证据,我们专注于最近映射的瞬时转录组(TT),它主要由基因间和内含子区域编码,半衰期为几分钟。通过共定位分析,我们在这里证明,编码 TT 的基因组区域显著富集与 MS 相关的 GWAS 变体和分子转导物的 DNA 结合位点,这些分子转导物介导 MS 的潜在非遗传决定因素(维生素 D 缺乏、EB 病毒潜伏感染、B 细胞功能障碍),表明 TT 编码区域是 MS 发病机制的热点。未来比较细胞特异性瞬时和稳定转录组的研究可能会阐明导致 MS 的遗传变异性和非遗传因素之间的相互作用。为此,我们的共定位分析提供了一个免费的在线数据资源,网址是 www.mscoloc.com。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3076/9085834/38915d84f5f8/41598_2022_11444_Fig1_HTML.jpg

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