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根霉胃蛋白酶与抑制剂蛋白质-配体复合物的质量加权分子动力学模拟

Mass-weighted molecular dynamics simulation of the protein-ligand complex of rhizopuspepsin and inhibitor.

作者信息

Mao B

机构信息

Upjohn Research Laboratories, Kalamazoo, Michigan 49001.

出版信息

Biophys J. 1991 Oct;60(4):966-73. doi: 10.1016/S0006-3495(91)82130-0.

Abstract

The mass-weighted molecular dynamics simulation method was developed previously for sampling the multidimensional conformational space of linear and cyclic polypeptides and studying their conformational flexibility. Herein results from molecular dynamics simulations of the protein-ligand complex of the aspartyl protease rhizopuspepsin and a polypeptide inhibitor are reported. The dihedral conformational space sampling for the linear peptide inhibitor in situ was found to be increased in the mass-weighted simulation as in other molecular systems previously studied. More significantly, the physical space of the enzyme binding pocket was also sampled efficiently in the simulations and multiple binding sites were identified for the inhibitor. These results suggest that it may be possible now to study, by computer simulations, the putative initial enzyme-inhibitor complex suggested experimentally from the time-dependent kinetics of enzyme inhibition by slow-binding inhibitors (Morrison, J. F., and C. T. Walsh. 1988. Adv. Enzymol. 61:201), and/or conformational substates in protein-ligand complexes suggested in the study of reassociation dynamics of myoglobin and carbon monoxide following photolysis (Austin, R. H., K. W. Beeson, L. Eisenstein, H. Frauenfelder, and I. C. Gunsalus. 1975. Biochemistry. 14:5355). Moreover, the intermediate binding steps and the molecular flexibility of the inhibitor shown in the MWMD simulation may have crucial roles in the ligand binding process.

摘要

质量加权分子动力学模拟方法是先前开发的,用于对线性和环状多肽的多维构象空间进行采样,并研究其构象灵活性。本文报道了天冬氨酰蛋白酶根霉胃蛋白酶与一种多肽抑制剂的蛋白质-配体复合物的分子动力学模拟结果。与先前研究的其他分子系统一样,在质量加权模拟中发现线性肽抑制剂原位的二面角构象空间采样增加。更重要的是,在模拟中还有效地对酶结合口袋的物理空间进行了采样,并确定了抑制剂的多个结合位点。这些结果表明,现在有可能通过计算机模拟来研究由慢结合抑制剂对酶抑制的时间依赖性动力学实验推测的初始酶-抑制剂复合物(莫里森,J.F.,和C.T.沃尔什。1988年。《酶学进展》61:201),和/或在肌红蛋白与一氧化碳光解后的重新结合动力学研究中提出的蛋白质-配体复合物中的构象亚状态(奥斯汀,R.H.,K.W.比森,L.艾森斯坦,H.弗劳恩费尔德,和I.C.冈萨卢斯。1975年。《生物化学》。14:5355)。此外,MWMD模拟中显示的抑制剂的中间结合步骤和分子灵活性可能在配体结合过程中起关键作用。

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Molecular dynamics simulation by atomic mass weighting.原子质量加权的分子动力学模拟。
Biophys J. 1990 Sep;58(3):803-5. doi: 10.1016/S0006-3495(90)82424-3.
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Dynamical theory of activated processes in globular proteins.球状蛋白质中活化过程的动力学理论。
Proc Natl Acad Sci U S A. 1982 Jul;79(13):4035-9. doi: 10.1073/pnas.79.13.4035.
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Internal mobility of ferrocytochrome c.亚铁细胞色素c的内部迁移率
Nature. 1980 Oct 16;287(5783):659-60. doi: 10.1038/287659a0.

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