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新型天然酚类海洋抑制剂与醛糖还原酶结合的对接及分子动力学研究

Docking and molecular dynamics studies toward the binding of new natural phenolic marine inhibitors and aldose reductase.

作者信息

Wang Zhiguo, Ling Baoping, Zhang Rui, Suo Yourui, Liu Yongjun, Yu Zhangyu, Liu Chengbu

机构信息

Northwest Institute of Plateau Biology, Chinese Academy of Sciences, Xining, Qinghai 810001, China.

出版信息

J Mol Graph Model. 2009 Sep;28(2):162-9. doi: 10.1016/j.jmgm.2009.06.003. Epub 2009 Jun 21.

Abstract

Phenolic marine natural product is a kind of new potential aldose reductase inhibitors (ARIs). In order to investigate the binding mode and inhibition mechanism, molecular docking and dynamics studies were performed to explore the interactions of six phenolic inhibitors with human aldose reductase (hALR2). Considering physiological environment, all the neutral and other two ionized states of each phenolic inhibitor were adopted in the simulation. The calculations indicate that all the inhibitors are able to form stable hydrogen bonds with the hALR2 active pocket which is mainly constructed by residues TYR48, HIS110 and TRP111, and they impose the inhibition effect by occupying the active space. In all inhibitors, only La and its two ionized derivatives La_ion1 and La_ion2, in which neither of the ortho-hydrogens of 3-hydroxyl is substituted by Br, bind with hALR2 active residues using the terminal 3-hydroxyl. While, all the other inhibitors, at least one of whose ortho-sites of 3- and 6-hydroxyls are substituted by Br substituent which take much electron-withdrawing effect and steric hindrance, bind with hALR2 through the lactone group. This means that the Br substituent can effectively regulate the binding modes of phenolic inhibitors. Although the lactone bound inhibitors have relatively high RMSD values, our dynamics study shows that both binding modes are of high stability. For each inhibitor molecule, the ionization does not change its original binding mode, but it does gradually increase the binding free energy, which reveals that besides hydrogen bonds, the electrostatic effect is also important to the inhibitor-hALR2 interaction.

摘要

酚类海洋天然产物是一类新型的潜在醛糖还原酶抑制剂(ARIs)。为了研究其结合模式和抑制机制,进行了分子对接和动力学研究,以探索六种酚类抑制剂与人醛糖还原酶(hALR2)的相互作用。考虑到生理环境,在模拟中采用了每种酚类抑制剂的所有中性状态以及其他两种离子化状态。计算结果表明,所有抑制剂都能够与主要由残基TYR48、HIS110和TRP111构成的hALR2活性口袋形成稳定的氢键,并且它们通过占据活性空间来发挥抑制作用。在所有抑制剂中,只有La及其两种离子化衍生物La_ion1和La_ion2(其中3-羟基的邻位氢均未被Br取代)利用末端3-羟基与hALR2活性残基结合。而所有其他抑制剂,其3-羟基和6-羟基的至少一个邻位被具有很强吸电子作用和空间位阻的Br取代基取代,它们通过内酯基团与hALR2结合。这意味着Br取代基可以有效地调节酚类抑制剂的结合模式。尽管内酯结合的抑制剂具有相对较高的均方根偏差(RMSD)值,但我们的动力学研究表明两种结合模式都具有很高的稳定性。对于每个抑制剂分子,离子化不会改变其原始结合模式,但会逐渐增加结合自由能,这表明除了氢键外,静电效应对于抑制剂与hALR2的相互作用也很重要。

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