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淀粉样β蛋白(1-40)pH依赖性结构组织的动态特性

Dynamic properties of pH-dependent structural organization of the amyloidogenic beta-protein (1-40).

作者信息

Rubinstein Alexander, Lyubchenko Yuri L, Sherman Simon

机构信息

Eppley Institute for Research in Cancer and Allied Diseases, College of Pharmacy, University of Nebraska Medical Center, Omaha, NE 68198-6805, USA.

出版信息

Prion. 2009 Jan-Mar;3(1):31-43. doi: 10.4161/pri.3.1.8388. Epub 2009 Jan 10.

Abstract

The structural organization of the amyloidogenic beta-protein containing 40 amino acid residues (Abeta40) was studied by the high temperature molecular dynamics simulations in the acidic (pH approximately 3) and basic (pH approximately 8) pH regions. The obtained data suggest that the central Ala21-Gly29 segment of Abeta40 can adopt folded and partially unfolded structures. At the basic pH, this segment forms folded structures stabilized by electrostatic interactions and hydrogen bonds. At the acidic pH, it forms partially unfolded structures. Two other segments flanking to the central segment exhibit the propensity to adopt unstable interconverting alpha-helical, 3(10)-helical and turn-like structures. One of these segments is comprised of the Ala30-Val36 residues at both of the considered pHs. The second segment is comprised of the Glu11-Phe20 at the basic pH and of the Glu11-Val24 residues at the acidic pHs. The revealed pH-dependent structuration of the Abeta40 allowed us to suggest a possible scenario for initial Abeta aggregation. According to this scenario, the occurrence of the partially unfolded states of the Ala21-Gly29 segment plays main role in the Abeta oligomerization process.

摘要

通过高温分子动力学模拟,在酸性(pH约为3)和碱性(pH约为8)pH区域研究了含40个氨基酸残基的淀粉样β蛋白(Abeta40)的结构组织。所得数据表明,Abeta40的中央Ala21 - Gly29片段可以呈现折叠和部分未折叠的结构。在碱性pH下,该片段形成由静电相互作用和氢键稳定的折叠结构。在酸性pH下,它形成部分未折叠的结构。位于中央片段两侧的另外两个片段倾向于采用不稳定的相互转换的α螺旋、3(10)螺旋和类似转角的结构。在两个考虑的pH值下,其中一个片段由Ala30 - Val36残基组成。第二个片段在碱性pH下由Glu11 - Phe20组成,在酸性pH下由Glu11 - Val24残基组成。所揭示的Abeta40的pH依赖性结构化使我们能够提出初始Abeta聚集的可能情况。根据这种情况,Ala21 - Gly29片段部分未折叠状态的出现在Abeta寡聚化过程中起主要作用。

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