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MarR 型调控蛋白 AbfR 的氧化还原感应机制的结构见解。

Structural Insights into the Redox-Sensing Mechanism of MarR-Type Regulator AbfR.

机构信息

Laboratory of Chemical Biology, State Key Laboratory of Drug Research, Shanghai Institute of Materia Medica, Chinese Academy of Sciences , Shanghai 201203, China.

University of Chinese Academy of Sciences , Beijing 100049, China.

出版信息

J Am Chem Soc. 2017 Feb 1;139(4):1598-1608. doi: 10.1021/jacs.6b11438. Epub 2017 Jan 23.

Abstract

As a master redox-sensing MarR-family transcriptional regulator, AbfR participates in oxidative stress responses and virulence regulations in Staphylococcus epidermidis. Here, we present structural insights into the DNA-binding mechanism of AbfR in different oxidation states by determining the X-ray crystal structures of a reduced-AbfR/DNA complex, an overoxidized (Cys13-SOH and Cys13-SOH) AbfR/DNA, and 2-disulfide cross-linked AbfR dimer. Together with biochemical analyses, our results suggest that the redox regulation of AbfR-sensing displays two novel features: (i) the reversible disulfide modification, but not the irreversible overoxidation, significantly abolishes the DNA-binding ability of the AbfR repressor; (ii) either 1-disulfide cross-linked or 2-disulfide cross-linked AbfR dimer is biologically significant. The overoxidized species of AbfR, resembling the reduced AbfR in conformation and retaining the DNA-binding ability, does not exist in biologically significant concentrations, however. The 1-disulfide cross-linked modification endows AbfR with significantly weakened capability for DNA-binding. The 2-disulfide cross-linked AbfR adopts a very "open" conformation that is incompatible with DNA-binding. Overall, the concise oxidation chemistry of the redox-active cysteine allows AbfR to sense and respond to oxidative stress correctly and efficiently.

摘要

作为一种精通还原感应 MarR 家族转录调节剂,AbfR 参与表皮葡萄球菌的氧化应激反应和毒力调节。在这里,我们通过确定还原 AbfR/DNA 复合物、过氧化(半胱氨酸 13-亚磺酸和半胱氨酸 13-亚磺酸)AbfR/DNA 和 2-二硫键交联 AbfR 二聚体的 X 射线晶体结构,提供了 AbfR 在不同氧化态下 DNA 结合机制的结构见解。结合生化分析,我们的结果表明,AbfR 感应的氧化还原调节显示出两个新的特征:(i)可逆的二硫键修饰,但不是不可逆的过氧化,显著削弱 AbfR 抑制剂的 DNA 结合能力;(ii)无论是 1-二硫键交联还是 2-二硫键交联的 AbfR 二聚体都是具有生物学意义的。然而,过氧化物形式的 AbfR,在构象上类似于还原 AbfR,并且保留 DNA 结合能力,但在具有生物学意义的浓度下不存在。1-二硫键交联修饰赋予 AbfR 显著减弱的 DNA 结合能力。2-二硫键交联的 AbfR 采用非常“开放”的构象,与 DNA 结合不兼容。总体而言,氧化还原活性半胱氨酸的简明氧化化学允许 AbfR 正确高效地感应和响应氧化应激。

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