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为 M1 和 M17 家族氨肽酶的锌中心生成 AMBER 力场参数。

Generation of AMBER force field parameters for zinc centres of M1 and M17 family aminopeptidases.

机构信息

a Infection and Immunity Program, Department of Microbiology, Biomedicine Discovery Institute , Monash University , Clayton , Victoria 3800 , Australia.

b Infection and Immunity Program, Department of Biochemistry and Molecular Biology, Biomedicine Discovery Institute , Monash University , Clayton , Victoria 3800 , Australia.

出版信息

J Biomol Struct Dyn. 2018 Aug;36(10):2595-2604. doi: 10.1080/07391102.2017.1364669. Epub 2017 Aug 28.

Abstract

The M1 and M17 aminopeptidases are metallo-exopeptidases that rely on the presence of divalent cations, usually zinc, in their active site for proteolytic activity. They are from separate protease superfamilies, however, members often have overlapping substrate specificity. Inhibitors of one or both enzymes can be used to modulate hypertension, reduce proliferation of certain types of cancers and control malaria parasites. Current inhibitors act to chelate the zinc ions in the active site, locking the enzymes in an inactive transition state. We were interested in using a computational approach to understand the structure and dynamics of the M1 and M17 aminopeptidases, however, the presence of the essential metal ions in the proteases presents a challenge to classical molecular dynamics (MD) simulation. The zinc amber force field does not contain applicable descriptions of the zinc coordination environment present in either of these two protease families. To provide tools for the study of these two enzymes, we have used the metal centre parameter builder to generate new hybrid bonded/nonbonded force field (FF) parameters to correctly describe the active site architecture for each enzyme. The new parameters were evaluated by fitting the normal mode frequencies of molecular mechanics to the quantum mechanics frequencies and validated by performing short MD simulations. The new FF parameters now enable more accurate and reliable MD simulations for any member of the M1 or M17 aminopeptidase superfamilies.

摘要

M1 和 M17 氨肽酶是金属外肽酶,其活性位点依赖于二价阳离子(通常为锌)的存在,才能发挥蛋白水解活性。它们来自不同的蛋白酶超家族,但成员通常具有重叠的底物特异性。一种或两种酶的抑制剂可用于调节高血压、减少某些类型癌症的增殖和控制疟原虫。目前的抑制剂通过螯合活性位点的锌离子起作用,将酶锁定在非活性过渡态。我们有兴趣使用计算方法来了解 M1 和 M17 氨肽酶的结构和动力学,但蛋白酶中必需金属离子的存在对经典分子动力学 (MD) 模拟提出了挑战。锌琥珀酸力场不包含这两种蛋白酶家族中存在的锌配位环境的适用描述。为了提供研究这两种酶的工具,我们使用金属中心参数生成器为每个酶生成新的混合键/非键力场 (FF) 参数,以正确描述活性位点结构。通过将分子力学的正则模态频率拟合到量子力学频率来评估新参数,并通过进行短 MD 模拟来验证。新的 FF 参数现在可以为 M1 或 M17 氨肽酶超家族的任何成员进行更准确和可靠的 MD 模拟。

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