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TYRP1 基因中与疾病相关的非编码单核苷酸多态性的计算机筛选和分子动力学模拟及其在 OCA3 中的结构后果。

In silico screening and molecular dynamics simulation of disease-associated nsSNP in TYRP1 gene and its structural consequences in OCA3.

机构信息

School of Bio Sciences and Technology (SBST), Bioinformatics Division, Vellore Institute of Technology University, Vellore, Tamil Nadu 632014, India.

出版信息

Biomed Res Int. 2013;2013:697051. doi: 10.1155/2013/697051. Epub 2013 Jun 19.

Abstract

Oculocutaneous albinism type III (OCA3), caused by mutations of TYRP1 gene, is an autosomal recessive disorder characterized by reduced biosynthesis of melanin pigment in the hair, skin, and eyes. The TYRP1 gene encodes a protein called tyrosinase-related protein-1 (Tyrp1). Tyrp1 is involved in maintaining the stability of tyrosinase protein and modulating its catalytic activity in eumelanin synthesis. Tyrp1 is also involved in maintenance of melanosome structure and affects melanocyte proliferation and cell death. In this work we implemented computational analysis to filter the most probable mutation that might be associated with OCA3. We found R326H and R356Q as most deleterious and disease associated by using PolyPhen 2.0, SIFT, PANTHER, I-mutant 3.0, PhD-SNP, SNP&GO, Pmut, and Mutpred tools. To understand the atomic arrangement in 3D space, the native and mutant (R326H and R356Q) structures were modelled. Finally the structural analyses of native and mutant Tyrp1 proteins were investigated using molecular dynamics simulation (MDS) approach. MDS results showed more flexibility in native Tyrp1 structure. Due to mutation in Tyrp1 protein, it became more rigid and might disturb the structural conformation and catalytic function of the structure and might also play a significant role in inducing OCA3. The results obtained from this study would facilitate wet-lab researches to develop a potent drug therapies against OCA3.

摘要

眼皮肤白化病 III 型(OCA3)是一种常染色体隐性遗传疾病,由 TYRP1 基因突变引起,其特征是毛发、皮肤和眼睛中黑色素的生物合成减少。TYRP1 基因编码一种称为酪氨酸酶相关蛋白-1(Tyrp1)的蛋白质。Tyrp1 参与维持酪氨酸酶蛋白的稳定性,并调节其在真黑色素合成中的催化活性。Tyrp1 还参与维持黑素体结构,并影响黑素细胞的增殖和细胞死亡。在这项工作中,我们进行了计算分析,以筛选可能与 OCA3 相关的最可能的突变。我们使用 PolyPhen 2.0、SIFT、PANTHER、I-mutant 3.0、PhD-SNP、SNP&GO、Pmut 和 Mutpred 工具发现 R326H 和 R356Q 是最具破坏性和与疾病相关的突变。为了了解 3D 空间中的原子排列,对天然和突变(R326H 和 R356Q)结构进行了建模。最后,使用分子动力学模拟(MDS)方法研究了天然和突变 Tyrp1 蛋白的结构分析。MDS 结果表明天然 Tyrp1 结构的柔韧性更高。由于 Tyrp1 蛋白的突变,它变得更加僵硬,可能会干扰结构的构象和催化功能,并可能在诱导 OCA3 中发挥重要作用。本研究的结果将有助于湿实验室研究,开发针对 OCA3 的有效药物治疗方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbb7/3703794/ccc87f2abb56/BMRI2013-697051.001.jpg

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