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钙离子存在下牛凝血酶原片段1的分子动力学模拟

Molecular dynamics simulation of bovine prothrombin fragment 1 in the presence of calcium ions.

作者信息

Hamaguchi N, Charifson P, Darden T, Xiao L, Padmanabhan K, Tulinsky A, Hiskey R, Pedersen L

机构信息

Department of Biology, University of North Carolina, Chapel Hill 27599.

出版信息

Biochemistry. 1992 Sep 22;31(37):8840-8. doi: 10.1021/bi00152a021.

Abstract

Early solvation-induced structural reorganization of calcium prothrombin fragment 1 is simulated with molecular dynamics. Initial coordinates are those of the 2.2-A resolution crystal structure [Soriano-Garcia, M., Padmanabhan, K., de Vos, A. M., & Tulinsky, A. (1992) Biochemistry 31, 2554-2556]. The molecular dynamics code AMBER, appropriately modified to include long-range (less than or equal to 22.0 A) ionic forces, was employed. The solution structure appears to equilibrate within 100 ps. Although minor changes are seen in various structural domains, the early solution structure basically maintains an intricate network of nine gamma-carboxyglutamic acid (Gla) residues encapsulating seven calcium ions. However, the Gla domain moves with respect to the kringle domain. This motion is mainly due to the movement of Ser34-Leu35 that appears to be a flexible hinge between the domains. The N-terminus of Ala 1 is in a tightly bound complex with three Gla residues that remains stable in the solution structure when the long-range electrostatic cutoff is employed and the near planar alignment of the seven calcium ions is only slightly distorted. The simulation structure is discussed in terms of experiments that studied calcium ion-induced quenching of the intrinsic fluorescence, protection of the N-terminal amino group from acetylation by calcium ions, chemical modification of the N-terminus to a trinitrophenyl derivative, and the possibility of a calcium-binding site(s) in the kringle domain.

摘要

利用分子动力学模拟了凝血酶原片段1钙早期溶剂化诱导的结构重组。初始坐标来自分辨率为2.2 Å的晶体结构[Soriano-Garcia, M., Padmanabhan, K., de Vos, A. M., & Tulinsky, A. (1992) Biochemistry 31, 2554 - 2556]。使用了经过适当修改以包含长程(小于或等于22.0 Å)离子力的分子动力学代码AMBER。溶液结构似乎在100 ps内达到平衡。尽管在各个结构域中观察到微小变化,但早期溶液结构基本上保持了由九个γ-羧基谷氨酸(Gla)残基包裹七个钙离子的复杂网络。然而,Gla结构域相对于kringle结构域发生了移动。这种移动主要是由于Ser34 - Leu35的移动,它似乎是结构域之间的一个灵活铰链。Ala 1的N端与三个Gla残基形成紧密结合的复合物,当采用长程静电截止时,该复合物在溶液结构中保持稳定,并且七个钙离子的近平面排列仅略有扭曲。根据研究钙离子诱导的内在荧光猝灭、钙离子对N端氨基乙酰化的保护、N端化学修饰为三硝基苯基衍生物以及kringle结构域中钙结合位点可能性的实验,对模拟结构进行了讨论。

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