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Probing the structural changes in the light chain of human coagulation factor VIIa due to tissue factor association.

机译:探究由于组织因子缔合导致的人类凝血因子VIIa轻链的结构变化。

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摘要

The crystallographic structure of human coagulation factor VIIa/tissue factor complex bound with calcium ions was used to model the solution structure of the light chain of factor VIIa (residues 1-142) in the absence of tissue factor. The Amber force field in conjunction with the particle mesh Ewald summation method to accommodate long-range electrostatic interactions was used in the trajectory calculations. The estimated TF-free solution structure was then compared with the crystal structure of factor VIIa/tissue factor complex to estimate the restructuring of factor VIIa due to tissue factor binding. The solution structure of the light chain of factor VIIa in the absence of tissue factor is predicted to be an extended domain structure similar to that of the tissue factor-bound crystal. Removal of the EGF1-bound calcium ion is shown by simulation to lead to minor structural changes within the EGF1 domain, but also leads to substantial relative reorientation of the Gla and EGF1 domains.
机译:人凝血因子VIIa /组织因子复合物与钙离子结合的晶体学结构用于在不存在组织因子的情况下模拟因子VIIa轻链(残基1-142)的溶液结构。在轨迹计算中使用了Amber力场和粒子网格Ewald求和方法相结合以适应远距离静电相互作用。然后将估计的无TF溶液结构与因子VIIa /组织因子复合物的晶体结构进行比较,以估计由于组织因子结合而导致的因子VIIa的重组。在不存在组织因子的情况下,因子VIIa轻链的溶液结构预计将是与组织因子结合的晶体相似的扩展域结构。通过模拟显示,去除EGF1结合的钙离子会导致EGF1结构域内的微小结构变化,但也会导致Gla和EGF1结构域的相对重排。

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