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A classical and ab initio study of the interaction of the myosin triphosphate binding domain with ATP.

机译:肌球蛋白三磷酸结合域与ATP相互作用的经典和从头算研究。

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摘要

We used classical molecular mechanics (MM) simulations and quantum mechanical (QM) structural relaxations to examine the active site of myosin when bound to ATP. Two conformations of myosin have been determined by x-ray crystallography. In one, there is no direct interaction between switch 2 and the nucleotide (open state). In the other (closed state), the universally conserved switch 2 glycine forms a hydrogen bond with a gamma-phosphate oxygen. MM simulations indicate that the two states are thermodynamically stable and allow us to investigate the extent to which the P-loop, switch 1, and switch 2 are involved in hydrolysis. We find that the open structure has a higher affinity for ATP than the closed structure, and that ATP is distorted toward a transition state by interactions with the protein. We also examine how the structure of the binding site changes with either MgATP or CaATP as the nucleotide in myosin in the open conformer. Our analyses suggest that higher CaATPase rates occur because the leaving phosphate (P(i)) group is more weakly bound and dissociation occurs faster. Finally, we validate the use of a particular formulation of a QM methodology (Car-Parrinello) to further refine the structures of the active site.
机译:我们使用经典的分子力学(MM)模拟和量子力学(QM)结构弛豫来检查与ATP结合时肌球蛋白的活性位点。 X射线晶体学已确定了肌球蛋白的两种构象。在一种情况下,开关2与核苷酸之间没有直接相互作用(开放状态)。在另一个(闭合状态)下,普遍保守的开关2甘氨酸与γ-磷酸氧形成氢键。 MM模拟表明这两个状态是热力学稳定的,这使我们能够研究P环,开关1和开关2参​​与水解的程度。我们发现,开放结构比封闭结构对ATP具有更高的亲和力,并且ATP通过与蛋白质的相互作用而向过渡态变形。我们还检查了结合位点的结构如何随着MgATP或CaATP作为开放构象体中肌球蛋白中的核苷酸而改变。我们的分析表明,较高的CaATPase发生率是因为离去的磷酸酯(P(i))基团的结合较弱,离解速度更快。最后,我们验证了使用QM方法的特定配方(Car-Parrinello)来进一步完善活性位点的结构。

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