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人类TAGAP蛋白功能性单核苷酸多态性的鉴定与计算机模拟分析:一项综合研究。

Identification and in silico analysis of functional SNPs of human TAGAP protein: A comprehensive study.

作者信息

Arshad Maria, Bhatti Attya, John Peter

机构信息

Atta-Ur-Rahman School of Applied Biosciences, National University of Sciences & Technology, Islamabad, Pakistan.

出版信息

PLoS One. 2018 Jan 12;13(1):e0188143. doi: 10.1371/journal.pone.0188143. eCollection 2018.

Abstract

Genetic polymorphisms in TAGAP gene have been associated with many diseases including rheumatoid arthritis, multiple sclerosis and other autoimmune disorders. Identifying functional SNPs in such disease associated genes is an uphill task hence before planning larger population study, it is better to scrutinize putative functional SNPs. In this study we used various computational approaches to identify nsSNPs which are deleterious to the structure and/or function of TAGAP protein that might be causing these diseases. Computational analysis was performed by five different in silico tools including SIFT, PROVEAN, PolyPhen-2, PhD-SNP and SNPs&GO. The study concludes that mutations of Glycine → Glutamic Acid at position 120, Glycine → Tryptophan at position 141 and Valine → Methionine at position 151 are major mutations in native TAGAP protein which might contribute to its malfunction and ultimately causing disease. The study also proposed 3D structures of native TAGAP protein and its three mutants. Future studies should consider these nsSNPs as main target mutations in various diseases involving TAGAP malfunction. This is the first comprehensive study, where TAGAP gene variants were analyzed using in silico tools hence will be of great help while considering large scale studies and also in developing precision medicines for cure of diseases related to these polymorphisms. Furthermore, animal models of various autoimmune diseases and having these mutations might be of help in exploring their precise roles.

摘要

TAGAP基因中的遗传多态性与包括类风湿性关节炎、多发性硬化症和其他自身免疫性疾病在内的多种疾病相关。在这类与疾病相关的基因中识别功能性单核苷酸多态性(SNP)是一项艰巨的任务,因此在计划开展更大规模的人群研究之前,最好仔细审查推定的功能性SNP。在本研究中,我们使用了各种计算方法来识别对TAGAP蛋白的结构和/或功能有害、可能导致这些疾病的非同义SNP(nsSNP)。通过SIFT、PROVEAN、PolyPhen-2、PhD-SNP和SNPs&GO这五种不同的计算机模拟工具进行了计算分析。该研究得出结论,第120位的甘氨酸→谷氨酸突变、第141位的甘氨酸→色氨酸突变和第151位的缬氨酸→甲硫氨酸突变是天然TAGAP蛋白中的主要突变,可能导致其功能失调并最终引发疾病。该研究还提出了天然TAGAP蛋白及其三种突变体的三维结构。未来的研究应将这些nsSNP视为涉及TAGAP功能失调的各种疾病中的主要目标突变。这是第一项使用计算机模拟工具分析TAGAP基因变异的全面研究,因此在考虑大规模研究以及开发治疗与这些多态性相关疾病的精准药物时将有很大帮助。此外,具有这些突变的各种自身免疫性疾病的动物模型可能有助于探索它们的确切作用。

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