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嗜盐菌盐激活型甲硫氨酸亚砜还原酶A的表征及作用机制研究

Characterization and mechanism investigation of salt-activated methionine sulfoxide reductase A from halophiles.

作者信息

Zhou Shihuan, Pan Bochen, Kuang Xiaoxue, Chen Shuhong, Liu Lianghui, Song Yawen, Zhao Yuyan, Xu Xianlin, Cheng Xiaoling, Yang Jiawei

机构信息

Department of Biochemistry, School of Preclinical Medicine, Zunyi Medical University, Zunyi 563000, Guizhou, China.

Department of Cell Biology, School of Preclinical Medicine, Zunyi Medical University, Zunyi 563000, Guizhou, China.

出版信息

iScience. 2024 Aug 23;27(9):110806. doi: 10.1016/j.isci.2024.110806. eCollection 2024 Sep 20.

Abstract

Halophiles, thriving in harsh saline environments, capture scientific interest due to their remarkable ability to prosper under extreme salinity. This study unveils the distinct salt-induced activation of methionine sulfoxide reductases (MsrA) from , showcasing a significant enhancement in enzymatic activity across various salt concentrations ranging from 0.5 to 3.5 M. This contrasts sharply with the activity profiles of non-halophilic counterparts. Through comprehensive molecular dynamics simulations, we demonstrate that salt ions stabilize and compact the enzyme's structure, notably enhancing its substrate affinity. Mutagenesis analysis further confirms the essential role of salt bridges formed by the basic Arg168 residue in salt-induced activation. Mutating Arg168 to an acidic or neutral residue disrupts salt-induced activation, substantially reducing the enzyme activity under salt conditions. Our research provides evidence of salt-activated MsrA activity in halophiles, elucidating the molecular basis of halophilic enzyme activity in response to salts.

摘要

嗜盐菌在恶劣的盐环境中茁壮成长,因其在极端盐度下具有非凡的生存能力而引起了科学界的关注。本研究揭示了来自[具体来源未提及]的甲硫氨酸亚砜还原酶(MsrA)独特的盐诱导激活现象,展示了在0.5至3.5 M的各种盐浓度下酶活性的显著增强。这与非嗜盐菌对应物的活性谱形成鲜明对比。通过全面的分子动力学模拟,我们证明盐离子稳定并压缩了酶的结构,显著提高了其底物亲和力。诱变分析进一步证实了碱性精氨酸168残基形成的盐桥在盐诱导激活中的关键作用。将精氨酸168突变为酸性或中性残基会破坏盐诱导激活,在盐条件下大幅降低酶活性。我们的研究提供了嗜盐菌中盐激活MsrA活性的证据,阐明了嗜盐酶响应盐的分子基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4561/11408995/3a91a11dff77/fx1.jpg

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