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疟原虫蛋白酶 2 的 α,β-不饱和苯并[1,4]二氮杂卓-2-酮甲酯抑制机制。

Mechanism of falcipain-2 inhibition by α,β-unsaturated benzo[1,4]diazepin-2-one methyl ester.

机构信息

Dipartimento di Scienze Farmaceutiche, Sezione di Chimica Farmaceutica Pietro Pratesi, Università degli Studi di Milano, Via Mangiagalli 25, 20133, Milan, Italy.

出版信息

J Comput Aided Mol Des. 2012 Sep;26(9):1035-43. doi: 10.1007/s10822-012-9596-4. Epub 2012 Sep 11.

Abstract

Falcipain-2 (FP-2) is a papain-family cysteine protease of Plasmodium falciparum whose primary function is to degrade the host red cell hemoglobin, within the food vacuole, in order to provide free amino acids for parasite protein synthesis. Additionally it promotes host cell rupture by cleaving the skeletal proteins of the erythrocyte membrane. Therefore, the inhibition of FP-2 represents a promising target in the search of novel anti-malarial drugs. A potent FP-2 inhibitor, characterized by the presence in its structure of the 1,4-benzodiazepine scaffold and an α,β-unsaturated methyl ester moiety capable to react with the Cys42 thiol group located in the active site of FP-2, has been recently reported in literature. In order to study in depth the inhibition mechanism triggered by this interesting compound, we carried out, through ONIOM hybrid calculations, a computational investigation of the processes occurring when the inhibitor targets the enzyme and eventually leads to an irreversible covalent Michael adduct. Each step of the reaction mechanism has been accurately characterized and a detailed description of each possible intermediate and transition state along the pathway has been reported.

摘要

疟原虫裂殖子蛋白-2(FP-2)是一种木瓜蛋白酶家族半胱氨酸蛋白酶,其主要功能是在食物泡内降解宿主红细胞血红蛋白,为寄生虫蛋白合成提供游离氨基酸。此外,它还通过切割红细胞膜的骨骼蛋白促进宿主细胞破裂。因此,抑制 FP-2 代表了寻找新型抗疟药物的一个有前途的靶点。文献中最近报道了一种有效的 FP-2 抑制剂,其结构中存在 1,4-苯并二氮杂䓬支架和一个α,β-不饱和甲酯部分,能够与位于 FP-2 活性位点的 Cys42 巯基反应。为了深入研究这种有趣的化合物引发的抑制机制,我们通过 ONIOM 混合计算,对抑制剂靶向酶并最终导致不可逆的共价迈克尔加成物的过程进行了计算研究。反应机制的每个步骤都得到了准确的描述,并报告了沿途径的每个可能中间体和过渡态的详细描述。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1c1/7088093/273c4c8dc5f1/10822_2012_9596_Sch1_HTML.jpg

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