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转录-翻译错误:基因中有害单核苷酸多态性的结构和功能影响研究

Transcription-translation error: investigation of the structural and functional impact of deleterious single nucleotide polymorphisms in gene.

作者信息

Soremekun Opeyemi S, Ezenwa Chisom, Soliman Mahmoud, Chikowore Tinashe, Nashiru Oyekanmi, Fatumo Segun

机构信息

Molecular Bio-computation and Drug Design Laboratory, School of Health Sciences, University of KwaZulu-Natal, Westville Campus, Durban, 4001, South Africa.

The African Computational Genomics (TACG) Research Group, MRC/UVRI LSHTM Uganda Research Unit, Entebbe, Uganda.

出版信息

Inform Med Unlocked. 2021;22. doi: 10.1016/j.imu.2020.100503. Epub 2020 Dec 24.

Abstract

Nonsynonymous single nucleotide polymorphisms (nsSNPs) are one of the most common forms of mutations known to disrupt the product of translation thereby altering the protein structure-function relationship. (PTB domain-containing engulfment adaptor protein 1) is an evolutionarily conserved adaptor protein that has been associated with glycated hemoglobin (HbA1c) in Genome-Wide Association Studies (GWAS). In order to understand the role of in the etiology of diabetes, it is important to study some functional nsSNPs present within the protein. We, therefore, used a SNPinformatics approach to retrieve, classify, and determine the stability effect of some nsSNPs. Y27C, G142D, A144T, and Y149C were jointly predicted by the pathogenic-classifying tools to be disease-causing, however, only G142D, A144T, and Y149C had their structural architecture perturbed as predicted by I-MUTANT and MuPro. Interestingly, G142D and Y149C occur at positions 142 and 149 of which coincidentally are found within the binding site of . Protein-Protein interaction analysis also revealed that interacted with 10 proteins such as Cell division cycle 5-like protein (CDC5L), ADP-ribosylation factor 6 (ARF6), Arf-GAP with coiled-coil (ACAP1), and Multiple epidermal growth factor-like domains protein 10 (MEGF10), etc. Taken together, rs1357922096, rs1264999716, and rs128246649 could be used as genetic biomarkers for the diagnosis of diabetes. However, being a computational study, these nsSNPs require experimental validation to explore their metabolic involvement in the pathogenesis of diseases.

摘要

非同义单核苷酸多态性(nsSNPs)是已知的最常见的突变形式之一,可破坏翻译产物,从而改变蛋白质的结构-功能关系。含PTB结构域的吞噬衔接蛋白1(PTB domain-containing engulfment adaptor protein 1)是一种进化上保守的衔接蛋白,在全基因组关联研究(GWAS)中与糖化血红蛋白(HbA1c)相关。为了了解其在糖尿病病因中的作用,研究该蛋白中存在的一些功能性nsSNPs很重要。因此,我们采用SNP信息学方法来检索、分类并确定一些nsSNPs的稳定性效应。致病分类工具联合预测Y27C、G142D、A144T和Y149C为致病突变,然而,如I-MUTANT和MuPro所预测,只有G142D、A144T和Y149C的结构架构受到干扰。有趣的是,G142D和Y149C分别位于该蛋白的第142和149位,恰好位于其结合位点内。蛋白质-蛋白质相互作用分析还显示,该蛋白与细胞分裂周期5样蛋白(CDC5L)、ADP-核糖基化因子6(ARF6)、含卷曲螺旋的Arf-GAP(ACAP1)和多表皮生长因子样结构域蛋白10(MEGF10)等10种蛋白质相互作用。综上所述,rs1357922096、rs1264999716和rs128246649可作为糖尿病诊断的遗传生物标志物。然而,作为一项计算研究,这些nsSNPs需要实验验证以探索它们在疾病发病机制中的代谢参与情况。

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