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蛋白质亚结构域变异富集鉴定出一个新的预测致病热点。

Protein Subdomain Enrichment of Variants Identify a Novel Predicted Pathogenic Hotspot.

作者信息

Leonard Riley J, Preston Claudia C, Gucwa Melanie E, Afeworki Yohannes, Selya Arielle S, Faustino Randolph S

机构信息

Genetics and Genomics Group, Sanford Research, Sioux Falls, SD, United States.

Department of Biology, College of St. Benedict/St. John's University, Collegeville, MN, United States.

出版信息

Front Cardiovasc Med. 2020 Feb 7;7:8. doi: 10.3389/fcvm.2020.00008. eCollection 2020.

Abstract

Functional variants in nuclear envelope genes are implicated as underlying causes of cardiopathology. To examine the potential association of single nucleotide variants of nucleoporin genes with cardiac disease, we employed a prognostic scoring approach to investigate variants of , a nucleoporin gene clinically linked with atrial fibrillation. Here we implemented bioinformatic profiling and predictive scoring, based on the gnomAD, National Heart Lung and Blood Institute-Exome Sequencing Project (NHLBI-ESP) Exome Variant Server, and dbNSFP databases to identify rare single nucleotide variants (SNVs) of potentially associated with cardiopathology. This predictive scoring revealed 24 SNVs of as potentially cardiopathogenic variants located primarily in the N-terminal crescent-shaped domain of NUP155. In addition, a predicted NUP155 R672G variant prioritized in our study was mapped to a region within the alpha helical stack of the crescent domain of NUP155. Bioinformatic analysis of inferred protein-protein interactions of NUP155 revealed over representation of top functions related to molecular transport, RNA trafficking, and RNA post-transcriptional modification. Topology analysis revealed prioritized hubs critical for maintaining network integrity and informational flow that included , and with nodal enrichment of RNA helicases in the topmost enriched subnetwork. Furthermore, integration of the top 5 subnetworks to capture network topology of an expanded framework revealed that maintained its hub status, with elevation of , and . This is the first study to report novel discovery of a NUP155 subdomain hotspot that enriches for allelic variants of NUP155 predicted to be clinically damaging, and supports a role for RNA metabolism in cardiac disease and development.

摘要

核膜基因中的功能变异被认为是心脏病理学的潜在病因。为了研究核孔蛋白基因单核苷酸变异与心脏病的潜在关联,我们采用了一种预后评分方法来研究与心房颤动临床相关的核孔蛋白基因NUP155的变异。在此,我们基于gnomAD、美国国立心肺血液研究所外显子测序项目(NHLBI - ESP)外显子变异服务器和dbNSFP数据库进行生物信息学分析和预测评分,以识别可能与心脏病理学相关的NUP155罕见单核苷酸变异(SNV)。这种预测评分揭示了24个NUP155的SNV,它们可能是致心脏病变异,主要位于NUP155的N端新月形结构域。此外,我们研究中优先考虑的一个预测NUP155 R672G变异被定位到NUP155新月形结构域α螺旋堆叠内的一个区域。对NUP155推断的蛋白质 - 蛋白质相互作用的生物信息学分析表明,与分子运输、RNA转运和RNA转录后修饰相关的顶级功能存在过度表达。拓扑分析揭示了对于维持网络完整性和信息流至关重要的优先枢纽,其中包括……,并且在最丰富的子网中RNA解旋酶有节点富集。此外,整合前5个子网络以捕获扩展框架的网络拓扑结构表明,……保持其枢纽地位,同时……和……有所增加。这是第一项报告发现NUP155亚结构域热点的新研究,该热点富集了预计具有临床损害性的NUP155等位基因变异,并支持RNA代谢在心脏病和发育中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37e0/7019101/bc22e0c181f0/fcvm-07-00008-g0001.jpg

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