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凝血酶原-2前体的交替形式与折叠形式之间由环驱动的构象转变:靶向分子动力学研究

Loop-driven conformational transition between the alternative and collapsed form of prethrombin-2: targeted molecular dynamics study.

作者信息

Wu Sangwook

机构信息

a Department of Physics , Pukyong National University , Busan 608-737 , Republic of Korea.

出版信息

J Biomol Struct Dyn. 2017 Jan;35(1):119-127. doi: 10.1080/07391102.2015.1134347. Epub 2016 Jul 29.

Abstract

Two distinct crystal structures of prethrombin-2, the alternative and collapsed forms, are elucidated by X-ray crystallogrphy. We analyzed the conformational transition from the alternative to the collapsed form employing targeted molecular dynamics (TMD) simulation. Despite small RMSD difference in the two X-ray crystal structures, some hydrophobic residues (W60d, W148, W215, and F227) show a significant difference between the two conformations. TMD simulation shows that the four hydrophobic residues undergo concerted movement from dimer to trimer transition via tetramer state in the conformational change from the alternative to the collapsed form. We reveal that the concerted movement of the four hydrophobic residues is controlled by movement of specific loop regions behind. In this paper, we propose a sequential scenario for the conformational transition from the alternative form to the collapsed form, which is partially supported by the mutant W148A simulation.

摘要

通过X射线晶体学阐明了凝血酶原-2的两种不同晶体结构,即交替形式和折叠形式。我们采用靶向分子动力学(TMD)模拟分析了从交替形式到折叠形式的构象转变。尽管两种X射线晶体结构的均方根偏差(RMSD)差异较小,但一些疏水残基(W60d、W148、W215和F227)在两种构象之间表现出显著差异。TMD模拟表明,在从交替形式到折叠形式的构象变化中,这四个疏水残基通过四聚体状态经历了从二聚体到三聚体转变的协同运动。我们发现这四个疏水残基的协同运动受后面特定环区域运动的控制。在本文中,我们提出了从交替形式到折叠形式构象转变的顺序过程,突变体W148A模拟部分支持了这一过程。

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