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首页> 外文期刊>Journal of Medicinal Chemistry >Molecular dynamics study of the IIA binding site in human serum albumin: influence of the protonation state of Lys195 and Lys199.
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Molecular dynamics study of the IIA binding site in human serum albumin: influence of the protonation state of Lys195 and Lys199.

机译:人类血清白蛋白中IIA结合位点的分子动力学研究:Lys195和Lys199质子化状态的影响。

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摘要

The IIA binding site of human serum albumin (HSA) preferentially binds hydrophobic organic anions of medium size (e.g., aspirin, benzylpenicillin, warfarin, etc.) and bilirubin. This binding ability is particularly important for the distribution, metabolism, and efficacy of drugs. In addition, HSA can also covalently link to different IIA substrates owing to the presence of a highly reactive residue, Lys199, which is strategically located in the IIA site. Herein, we present results of three restrained molecular dynamics (MD) simulations of the IIA binding site on the HSA protein. From these simulations, we have determined the influence that the ionization state of the key residue, Lys199, and the nearby Lys195 has on the structure and dynamics of the IIA binding site. When Lys199 is neutral the computed average distances for the most significant interresidue contacts are in good agreement with those estimated from the X-ray coordinates. The analysis of the solvent structure and dynamics indicates that the basic form of Lys199 is likely connected to the acid form of Lys195 through a network of H-bonding water molecules with a donor --> acceptor character. The presence of these water bridges can be important for stabilizing the configuration of the IIA binding site and/or promoting a potential Lys195 --> Lys199 proton-transfer process. These results suggest that both lysine residues located in the IIA binding site of HSA, Lys195 and Lys199, could play a combined and comparable chemical role. Our simulations also give insight into the binding of bilirubin to HSA.
机译:人血清白蛋白(HSA)的IIA结合位点优先结合中等大小的疏水性有机阴离子(例如阿司匹林,苄青霉素,华法林等)和胆红素。这种结合能力对于药物的分布,代谢和功效特别重要。另外,由于高反应性残基Lys199的存在,HSA还可以共价连接至不同的IIA底物,而Lys199则位于IIA位置。在本文中,我们介绍了HSA蛋白上IIA结合位点的三个限制性分子动力学(MD)模拟结果。通过这些模拟,我们确定了关键残基Lys199和附近的Lys195的电离状态对IIA结合位点的结构和动力学的影响。当Lys199为中性时,计算出的最重要的残基间接触的平均距离与从X射线坐标估计的平均距离非常吻合。溶剂结构和动力学的分析表明,Lys199的基本形式可能通过具有供体->受体特征的H键水分子网络与Lys195的酸形式连接。这些水桥的存在对于稳定IIA结合位点的构型和/或促进潜在的Lys195-> Lys199质子转移过程至关重要。这些结果表明,位于HSA的IIA结合位点的赖氨酸残基Lys195和Lys199可能起着组合的和相当的化学作用。我们的模拟还提供了胆红素与HSA结合的见解。

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