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NRP1 基因中与 SARS-COV-2 相关的 SNPs 的计算机预测和分子对接。

In Silico Prediction and Molecular Docking of SNPs in NRP1 Gene Associated with SARS-COV-2.

机构信息

Vocational School of Health Services, Laboratory Technology, Üsküdar University, Üsküdar, Istanbul, Turkey.

Vocational School of Health Services, Medical and Aromatic Plants, Üsküdar University, Üsküdar, Istanbul, Turkey.

出版信息

Biochem Genet. 2024 Feb;62(1):156-175. doi: 10.1007/s10528-023-10409-6. Epub 2023 Jun 9.

Abstract

Neuropilin-1 (NRP1) which is a main transmembrane cell surface receptor acts as a host cell mediator resulting in increasing the SARS-Cov-2 infectivity and also plays a role in neuronal development, angiogenesis and axonal outgrowth. The goal of this study is to estimate the impact of single nucleotide polymorphisms (SNPs) in the NRP1 gene on the function, structure and stabilization of protein as well as on the miRNA-mRNA binding regions using bioinformatical tools. It is also aimed to investigate the changes caused by SNPs in NRP1 on interactions with drug molecule and spike protein. The missense type of SNPs was analyzed using SIFT, PolyPhen-2, SNAP2, PROVEAN, Mutation Assessor, SNPs&GO, PhD-SNP, I-Mutant 3.0, MUpro, STRING, Project HOPE, ConSurf, and PolymiRTS. Docking analyses were conducted by AutoDock Vina program. As a result, a total of 733 missense SNPs were determined within the NRP1 gene and nine SNPs were specified as damaging to the protein. The modelling results showed that wild and mutant type amino acids had some different properties such as size, charge, and hydrophobicity. Additionally, their three-dimensional structures of protein were utilized for confirmation of these differences. After evaluating the results, nine polymorphisms rs141633354, rs142121081, rs145954532, rs200028992, rs200660300, rs369312020, rs370117610, rs370551432, rs370641686 were determined to be damaging on the structure and function of NRP1 protein and located in conserved regions. The results of molecular docking showed that the binding affinity values are nearly the same for wild-type and mutant structures support that the mutations carried out are not in the focus of the binding site, therefore the ligand does not affect the binding energy. It is expected that the results will be useful for future studies.

摘要

神经纤毛蛋白 1(NRP1)是一种主要的跨膜细胞表面受体,作为宿主细胞介体,导致 SARS-CoV-2 感染性增加,并且在神经元发育、血管生成和轴突生长中发挥作用。本研究的目的是使用生物信息学工具估计 NRP1 基因中单核苷酸多态性(SNPs)对蛋白质功能、结构和稳定性以及 miRNA-mRNA 结合区域的影响。还旨在研究 NRP1 中的 SNPs 引起的与药物分子和刺突蛋白相互作用的变化。使用 SIFT、PolyPhen-2、SNAP2、PROVEAN、Mutation Assessor、SNPs&GO、PhD-SNP、I-Mutant 3.0、MUpro、STRING、Project HOPE、ConSurf 和 PolymiRTS 分析错义 SNP。通过 AutoDock Vina 程序进行对接分析。结果,在 NRP1 基因中确定了总共 733 个错义 SNP,其中 9 个 SNP 被指定为对蛋白质有害。建模结果表明,野生型和突变型氨基酸具有一些不同的性质,如大小、电荷和疏水性。此外,还利用它们的蛋白质三维结构来证实这些差异。在评估结果后,确定了 9 个多态性 rs141633354、rs142121081、rs145954532、rs200028992、rs200660300、rs369312020、rs370117610、rs370551432、rs370641686 对 NRP1 蛋白质的结构和功能具有破坏性,并且位于保守区域。分子对接的结果表明,野生型和突变型结构的结合亲和力值几乎相同,这表明进行的突变不在结合位点的焦点,因此配体不会影响结合能。预计这些结果将对未来的研究有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c6d/10255949/84b16b2f7e0d/10528_2023_10409_Fig1_HTML.jpg

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