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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Exploration of Multistate Conformational Dynamics upon Ligand Binding of a Monomeric Enzyme Involved in Pyrophosphoryl Transfer
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Exploration of Multistate Conformational Dynamics upon Ligand Binding of a Monomeric Enzyme Involved in Pyrophosphoryl Transfer

机译:聚合物组合动力学对纤维磷磷转移中的单体酶配体结合的探讨

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HPPK (6-hydroxymethy1-7,8-dihydropterin pyrophosphokinase) is a monomeric protein with 158 residues, which undergoes large-scale conformational changes between apo, open, and holo states responding to ligand binding for its function. It has been explored widely as an excellent target for potential antibacterial drug development. However, little is known about how conformational dynamics between the native states influences the substrate recognition and the functionality of enzymatic catalysis. Here, we report a coarse grained triple-basin structure-based model upon ligand binding to describe such multiple-state system by the molecular dynamics simulation. With our model, we have made theoretical predictions that are in good agreement with the experimental measurements. Our results revealed the intrinsic conformational fluctuations between apo and open states without ligand binding. We found that HPPK can switch to the activated holo state upon the ordered binding of the two ligands (ATP and HP). We uncovered the underlying mechanism by which major induced fit and minor population shift pathways coexist upon ligand binding by quantitative flux analysis. Additionally, we pointed out the structural origin for the conformational changes and identified the key residues as well as contact interactions. We further explored the temperature effect on the conformational distributions and pathway weights. It gave strong support that higher temperatures promote population shift, while the induced fit pathway is always the predominant activation route of the HPPK system. These findings will provide significant insights of the mechanisms of the multistate conformational dynamics of HPPK upon ligand binding.
机译:HPPK(6-羟基甲基-7,8-二氢磷酸酯素溶栓磷素酶)是一种具有158个残基的单体蛋白,其在响应其功能的APO,Open和Holo状态之间经历大规模构象变化。它已被广泛探索为潜在的抗菌药物发育的优秀目标。然而,关于如何对本地状态之间的构象动态感受到基础识别和酶促催化的功能的知识众所周知。在这里,我们在配体结合时报告基于粗粒的三盆地结构基础模型,以通过分子动力学模拟来描述这种多状态系统。通过我们的模型,我们已经使理论预测与实验测量有关。我们的结果揭示了APO与不带配体结合的开放状态之间的内在构象波动。我们发现HPPK可以在两个配体(ATP和HP)的有序装订时切换到激活的HOLO状态。我们发现通过定量通量分析在配体结合时共存的主要诱导型配合和次要人口换档途径共存的潜在机制。此外,我们指出了构象变化的结构来源,并确定了关键残留物以及接触相互作用。我们进一步探索了对构象分布和途径重量的温度效应。它得到了强大的支持,较高的温度促进人口转变,而诱导的拟合途径始终是HPPK系统的主要激活路径。这些发现将提供HPPK在配体结合时多岩构象动态的机制的重要见解。

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