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抗σ因子RsiW对枯草芽孢杆菌SigW活性调控的结构见解

Structural insights into the regulation of Bacillus subtilis SigW activity by anti-sigma RsiW.

作者信息

Devkota Shankar Raj, Kwon Eunju, Ha Sung Chul, Chang Hyeun Wook, Kim Dong Young

机构信息

College of Pharmacy, Yeungnam University, Gyeongsan, Gyeongbuk, South Korea.

Pohang Accelerator Laboratory, Pohang University of Science and Technology, Pohang, Gyeongbuk, South Korea.

出版信息

PLoS One. 2017 Mar 20;12(3):e0174284. doi: 10.1371/journal.pone.0174284. eCollection 2017.

Abstract

Bacillus subtilis SigW is localized to the cell membrane and is inactivated by the tight interaction with anti-sigma RsiW under normal growth conditions. Whereas SigW is discharged from RsiW binding and thus initiates the transcription of its regulon under diverse stress conditions such as antibiotics and alkaline shock. The release and activation of SigW in response to extracytoplasmic signals is induced by the regulated intramembrane proteolysis of RsiW. As a ZAS (Zinc-containing anti-sigma) family protein, RsiW has a CHCC zinc binding motif, which implies that its anti-sigma activity may be regulated by the state of zinc coordination in addition to the proteolytic cleavage of RsiW. To understand the regulation mode of SigW activity by RsiW, we determined the crystal structures of SigW in complex with the cytoplasmic domain of RsiW, and compared the conformation of the CHCC motif in the reduced/zinc binding and the oxidized states. The structures revealed that RsiW inhibits the promoter binding of SigW by interacting with the surface groove of SigW. The interaction between SigW and RsiW is not disrupted by the oxidation of the CHCC motif in RsiW, suggesting that SigW activity might not be regulated by the zinc coordination states of the CHCC motif.

摘要

枯草芽孢杆菌的SigW定位于细胞膜,在正常生长条件下通过与抗σ因子RsiW紧密相互作用而失活。而在诸如抗生素和碱性休克等多种应激条件下,SigW会从与RsiW的结合中释放出来,从而启动其调控子的转录。RsiW的膜内蛋白水解作用可诱导SigW响应胞外信号而释放并激活。作为一种含锌抗σ因子(ZAS)家族蛋白,RsiW具有CHCC锌结合基序,这意味着其抗σ活性除了受RsiW的蛋白水解切割调控外,还可能受锌配位状态的影响。为了解RsiW对SigW活性的调控模式,我们测定了与RsiW胞质结构域复合物中SigW的晶体结构,并比较了还原/锌结合状态和氧化状态下CHCC基序的构象。结构显示,RsiW通过与SigW的表面凹槽相互作用来抑制SigW与启动子的结合。RsiW中CHCC基序的氧化并未破坏SigW与RsiW之间的相互作用,这表明SigW的活性可能不受CHCC基序锌配位状态的调控。

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