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评估 DE 环区域 D59P 突变对β2-微球蛋白淀粉样聚集倾向的影响:分子动力学模拟研究。

Assessing the effect of D59P mutation in the DE loop region in amyloid aggregation propensity of β2-microglobulin: A molecular dynamics simulation study.

机构信息

Department of Chemistry, School of Basic and Applied Sciences, Sri Guru Granth Sahib World University, Punjab, India.

出版信息

J Cell Biochem. 2018 Jan;119(1):782-792. doi: 10.1002/jcb.26241. Epub 2017 Jul 31.

DOI:10.1002/jcb.26241
PMID:28657666
Abstract

Dialysis-related amyloidosis (DRA) is a severe condition characterized by the accumulation of amyloidogenic β2-microglobulin (β2m) protein around skeletal joints and bones. The recent studies highlighted a critical role of the DE loop region for β2m stability and amyloid aggregation propensity. Despite significant efforts, the molecular mechanism of enhanced aggregation due to D59P mutation in the DE loop region remain elusive. In the present study, explicit-solvent molecular dynamics (MD) simulations were performed to examine the key changes in the structural and dynamic properties of wild type (wt) β2m upon D59P mutation. MD simulations reveal a decrease in the average number of hydrogen bonds in the loop regions on D59P mutation that enhances conformational flexibility, which lead to higher aggregation propensity of D59P as compare to wt β2m. The principal component analysis (PCA) highlight that D59P covers a larger region of phase space and display a higher trace value than wt β2m, which suggest an overall enhancement in the conformational flexibility. D59P display two minimum energy basins in the free energy landscape (FEL) that are associated with thermodynamically less stable conformational states as compare to single minimum energy basin in wt β2m. The present study provides theoretical insights into the molecular mechanism behind the higher aggregation propensity of D59P as compare to wt β2m.

摘要

透析相关性淀粉样变(DRA)是一种严重的疾病,其特征是在骨骼关节和骨骼周围积聚淀粉样β2-微球蛋白(β2m)蛋白。最近的研究强调了 DE 环区域对β2m 稳定性和淀粉样聚集倾向的关键作用。尽管付出了巨大的努力,但由于 DE 环区域的 D59P 突变导致聚集增强的分子机制仍不清楚。在本研究中,进行了显式溶剂分子动力学(MD)模拟,以研究野生型(wt)β2m 中 D59P 突变后结构和动态特性的关键变化。MD 模拟揭示了 D59P 突变后环区氢键平均数量减少,从而增强了构象灵活性,这导致 D59P 的聚集倾向高于 wt β2m。主成分分析(PCA)强调 D59P 覆盖了更大的相空间区域,并显示出比 wt β2m 更高的轨迹值,这表明构象灵活性整体增强。D59P 在自由能景观(FEL)中显示出两个最小能量盆地,与 wt β2m 中的单个最小能量盆地相比,这些盆地与热力学上不太稳定的构象状态相关。本研究为 D59P 比 wt β2m 具有更高聚集倾向的分子机制提供了理论见解。

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