Exploring the Dynamics of Holo-Shikimate Kinase through Molecular Mechanics

P. Ojeda-May
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引用次数: 0

Abstract

Understanding the connection between local and global dynamics can provide valuable insights into enzymatic function and may contribute to the development of novel strategies for enzyme modulation. In this work, we investigated the dynamics at both the global and local (active site) levels of Shikimate Kinase (SK) through microsecond time-scale molecular dynamics (MD) simulations of the holoenzyme in the product state. Our focus was on the wild-type (WT) enzyme and two mutants (R116A and R116K) which are known for their reduced catalytic activity. Through exploring the dynamics of these variants, we gained insights into the role of residue R116 and its contribution to overall SK dynamics. We argue that the connection between local and global dynamics can be attributed to local frustration near the mutated residue which perturbs the global protein dynamics.
用分子力学探讨全莽草激酶的动力学
了解局部和全局动力学之间的联系可以为酶的功能提供有价值的见解,并可能有助于开发新的酶调节策略。在这项工作中,我们通过微秒时间尺度分子动力学(MD)模拟了Shikimate Kinase (SK)在产物状态下的全局和局部(活性位点)水平上的动力学。我们的重点是野生型(WT)酶和两个突变体(R116A和R116K),它们的催化活性降低。通过探索这些变异的动力学,我们深入了解了残基R116的作用及其对整体SK动力学的贡献。我们认为局部和全局动力学之间的联系可以归因于突变残基附近的局部挫折,它扰乱了全局蛋白质动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.60
自引率
0.00%
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