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Data from molecular dynamics simulations in support of the role of human CES1 in the hydrolysis of Amplex Red

机译:来自分子动力学模拟的数据支持人类CES1在Amplex Red水解中的作用

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摘要

This data article contains the results of molecular dynamics (MD) simulations performed to assess the stability of the previously computed complex between the hCES1 structure and the Amplex Red (AR) substrate (Miwa et al., 2015) and to compare the dynamic behavior of this complex with that of the corresponding hCES1-deacetylAR product. The study involves both standard molecular dynamics (MD) and steered (SMD) simulations to offer a quantitative comparison of the stability for the two complexes. With regard the standard MD runs, the data article graphically reports the r.m.s.d. profile of the ligand׳s atoms as well as the dynamic behavior of key contacts involving the catalytic Ser221 residue. The SMD simulations provide a comparison of the pull forces required to undock the two ligands and reveal that Van der Waals and hydrophobic interactions play a key role in complex stabilization.
机译:本数据文章包含分子动力学(MD)模拟的结果,以评估先前计算的hCES1结构与Amplex Red(AR)底物之间的复合物的稳定性(Miwa等人,2015),并比较了该复合物与相应的hCES1-去乙酰基AR产物的复合物。该研究涉及标准分子动力学(MD)和操纵(SMD)模拟,以定量比较这两种配合物的稳定性。关于标准MD运行,数据文章以图形方式报告了r.m.s.d.配体原子的分布以及涉及催化Ser221残基的关键接触的动力学行为。 SMD模拟提供了解开两个配体所需的拉力的比较,并揭示了范德华力和疏水性相互作用在复杂稳定化过程中起着关键作用。

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