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计算机分析预测人类 RASSF5 基因有害 SNP 对其结构和功能的影响。

In silico analysis predicting effects of deleterious SNPs of human RASSF5 gene on its structure and functions.

机构信息

Department of Biotechnology and Genetic Engineering, Noakhali Science and Technology University, Noakhali, Bangladesh.

Department of Biochemistry and Biotechnology, University of Barishal, Barishal, Bangladesh.

出版信息

Sci Rep. 2020 Sep 3;10(1):14542. doi: 10.1038/s41598-020-71457-1.

Abstract

Ras association domain-containing protein 5 (RASSF5), one of the prospective biomarkers for tumors, generally plays a crucial role as a tumor suppressor. As deleterious effects can result from functional differences through SNPs, we sought to analyze the most deleterious SNPs of RASSF5 as well as predict the structural changes associated with the mutants that hamper the normal protein-protein interactions. We adopted both sequence and structure based approaches to analyze the SNPs of RASSF5 protein. We also analyzed the putative post translational modification sites as well as the altered protein-protein interactions that encompass various cascades of signals. Out of all the SNPs obtained from the NCBI database, only 25 were considered as highly deleterious by six in silico SNP prediction tools. Among them, upon analyzing the effect of these nsSNPs on the stability of the protein, we found 17 SNPs that decrease the stability. Significant deviation in the energy minimization score was observed in P350R, F321L, and R277W. Besides this, docking analysis confirmed that P350R, A319V, F321L, and R277W reduce the binding affinity of the protein with H-Ras, where P350R shows the most remarkable deviation. Protein-protein interaction analysis revealed that RASSF5 acts as a hub connecting two clusters consisting of 18 proteins and alteration in the RASSF5 may lead to disassociation of several signal cascades. Thus, based on these analyses, our study suggests that the reported functional SNPs may serve as potential targets for different proteomic studies, diagnosis and therapeutic interventions.

摘要

Ras 相关结构域蛋白 5(RASSF5)是肿瘤的潜在生物标志物之一,通常作为肿瘤抑制因子发挥关键作用。由于 SNP 会导致功能差异,因此我们试图分析 RASSF5 的最具破坏性 SNP,并预测与突变体相关的结构变化,这些突变体会阻碍正常的蛋白质-蛋白质相互作用。我们采用基于序列和结构的方法来分析 RASSF5 蛋白的 SNP。我们还分析了潜在的翻译后修饰位点以及改变的蛋白质-蛋白质相互作用,这些相互作用涵盖了各种信号级联。在从 NCBI 数据库获得的所有 SNP 中,只有 25 个被六个计算机 SNP 预测工具认为是高度破坏性的。在分析这些 nsSNP 对蛋白质稳定性的影响时,我们发现有 17 个 SNP 降低了蛋白质的稳定性。在 P350R、F321L 和 R277W 中观察到能量最小化得分的显著偏差。此外,对接分析证实 P350R、A319V、F321L 和 R277W 降低了蛋白质与 H-Ras 的结合亲和力,其中 P350R 表现出最显著的偏差。蛋白质-蛋白质相互作用分析表明,RASSF5 作为一个枢纽,连接两个由 18 个蛋白质组成的簇,RASSF5 的改变可能导致几个信号级联的解体。因此,基于这些分析,我们的研究表明,报告的功能 SNP 可能成为不同蛋白质组学研究、诊断和治疗干预的潜在靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c2b/7471297/5932f3f86ab2/41598_2020_71457_Fig1_HTML.jpg

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