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通过分子模拟深入了解柯里拉京对耐甲氧西林金黄色葡萄球菌丝氨酸/苏氨酸磷酸酶(Stp1)的双重抑制机制。

Insight into the Dual Inhibition Mechanism of Corilagin against MRSA Serine/Threonine Phosphatase (Stp1) by Molecular Modeling.

作者信息

Yang Yanan, Wang Xiyan, Gao Yawen, Niu Xiaodi

机构信息

College of Food Science and Engineering, Jilin University, Changchun 130062, China.

出版信息

ACS Omega. 2020 Dec 15;5(51):32959-32968. doi: 10.1021/acsomega.0c03955. eCollection 2020 Dec 29.

Abstract

Serine/threonine phosphatase (Stp1) is known to be involved in the regulation of cysteine phosphorylation levels in many different pathways, such as virulence factor regulation in methicillin-resistant (MRSA). Therefore, Stp1 can be used as a potential target for inhibiting MRSA infection. In this study, using virtual screening, we found that corilagin, a natural compound, was screened as a potential Stp1 inhibitor. Then, the phosphatase assay exhibited high inhibitory activity against Stp1. On the basis of the enzyme kinetics experiment, we found that corilagin exhibited a dual inhibitory mechanism of competitive and allosteric inhibition. To further elucidate the mechanism of interaction between corilagin and Stp1, molecular dynamics (MD) simulations were performed on the Stp1-corilagin complex. Consistent with the mutagenesis assays and fluorescence quenching assays results, the competitive and allosteric binding sites of corilagin with Stp1 were identified. In the competitive binding site of Stp1, Asn162, Ile164, Tyr199, and Lys232 were found to play a key role in this complex. In the allosteric binding site, hydrophobic interaction was the main binding force. The Asn142, Val145, Leu146, Pro152, and Phe179 residues of Stp1 were found to play a critical role in the binding of corilagin with Stp1. In this study, we used MD simulation to reveal the ligand-protein interactions, providing a theoretical basis. This research work, thus, lays down the foundation for the development of new Stp1 inhibitors to be utilized in the future.

摘要

丝氨酸/苏氨酸磷酸酶(Stp1)已知参与许多不同途径中半胱氨酸磷酸化水平的调节,如耐甲氧西林金黄色葡萄球菌(MRSA)的毒力因子调节。因此,Stp1可作为抑制MRSA感染的潜在靶点。在本研究中,通过虚拟筛选,我们发现天然化合物柯里拉京被筛选为潜在的Stp1抑制剂。然后,磷酸酶测定显示其对Stp1具有高抑制活性。基于酶动力学实验,我们发现柯里拉京表现出竞争性和变构抑制的双重抑制机制。为了进一步阐明柯里拉京与Stp1之间的相互作用机制,对Stp1-柯里拉京复合物进行了分子动力学(MD)模拟。与诱变试验和荧光猝灭试验结果一致,可以确定柯里拉京与Stp1的竞争性和变构结合位点。在Stp1的竞争性结合位点,发现天冬酰胺162、异亮氨酸164、酪氨酸199和赖氨酸232在该复合物中起关键作用。在变构结合位点,疏水相互作用是主要结合力。发现Stp1的天冬酰胺142、缬氨酸145、亮氨酸146、脯氨酸152和苯丙氨酸179残基在柯里拉京与Stp1的结合中起关键作用。在本研究中,我们使用MD模拟揭示配体-蛋白质相互作用,提供了理论依据。因此,这项研究工作为未来开发新的Stp1抑制剂奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf29/7774088/bc50dfd5e707/ao0c03955_0002.jpg

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