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首页> 外文期刊>Journal of chemical information and modeling >Computational Rationale for the Selective Inhibition of the Herpes Simplex Virus Type 1 Uracil-DNA Glycosylase Enzyme
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Computational Rationale for the Selective Inhibition of the Herpes Simplex Virus Type 1 Uracil-DNA Glycosylase Enzyme

机译:选择性抑制单纯疱疹病毒1型尿嘧啶-DNA糖基化酶的计算原理。

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摘要

The herpes simplex virus uracil-DNA glycosylase (hsvUNG) enzyme is responsible for the reactivation of the virus from latency and efficient viral replication in nerve tissue. The lack of uracil-DNA glycosylase enzyme in human neurons and the continuous deamination of cytosine create an environment where the presence of viral uracil-DNA glycosylase is a necessity for the proliferation of the virus. A series of 6-(4-alkylanilino)-uracil inhibitors has been developed that selectively and strongly binds to the hsvUNG enzyme while weakly binding to human uracil-DNA glycosylase (hUNG). Here, by using a combination of sequence and structural comparisons between the two enzymes along with free energy of binding computations and principal component analysis of the ligands, we investigate and rationalize the inhibitory effect of the 6-(4-alkylanilino)-uracil series as a function of alkyl chain length on the hsvUNG. The results of these computations corroborate the experimental finding that the inhibitor with an octyl aliphatic chain selectively binds hsvUNG best. More importantly we find that 6-(4-octylanilino)-uracils selective inhibition of hsvUNG over hUNG is due to the combination of the solution preconfigured bent conformation of that specific chain length and the position of HIS92 (absent in hUNG) just outside hsvUNGs hydrophobic gorge lying adjacent to its uracil binding pocket. The similarities between the uracil binding pockets in hsvUNG and hUNG obfuscate an understanding of the preferential inhibition of the virus enzyme. However, the differences in the enzymes shallow hydrophobic grooves adjacent to the binding pockets, such as the gorge we identify here, rationalizes 6-(4-alkylanilino)-uracil with an octyl chain length as an excellent pharmacophore template for hsvUNG inhibitor design.
机译:单纯疱疹病毒尿嘧啶-DNA糖基化酶(hsvUNG)酶负责从潜伏期和有效的神经组织病毒复制中重新激活病毒。人神经元中尿嘧啶-DNA糖基化酶的缺乏和胞嘧啶的连续脱氨基创造了一种环境,其中病毒尿嘧啶-DNA糖基化酶的存在是病毒增殖的必要条件。已经开发了一系列6-(4-烷基苯胺基)-尿嘧啶抑制剂,其选择性地和强烈地与hsvUNG酶结合,而与人尿嘧啶-DNA糖基化酶(hUNG)弱结合。在这里,通过结合使用两种酶之间的序列和结构比较,结合结合能的自由能和配体的主成分分析,我们研究并合理化了6-(4-烷基苯胺基)-尿嘧啶系列的抑制作用,如hsvUNG上烷基链长的函数。这些计算的结果证实了实验发现,即具有辛基脂肪族链的抑制剂选择性地与hsvUNG最佳结合。更重要的是,我们发现hsvUNG相对于hUNG的6-(4-辛基丙氨酸)-尿嘧啶选择性抑制是由于溶液中预先配置的特定链长的弯曲构象与hsvUNG疏水性之外的HIS92(hUNG中不存在)的位置相结合峡谷位于尿嘧啶结合口袋附近。 hsvUNG和hUNG中尿嘧啶结合口袋之间的相似性混淆了对病毒酶优先抑制的理解。但是,与结合口袋相邻的酶浅疏水凹槽(例如我们在此处确定的峡谷)中的差异将具有辛基链长的6-(4-烷基苯胺基)-尿嘧啶合理化,作为hsvUNG抑制剂设计的出色药效团模板。

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