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锌在天蓝色链霉菌二硫键应激调节抗σ因子RsrA中的作用

The Role of zinc in the disulphide stress-regulated anti-sigma factor RsrA from Streptomyces coelicolor.

作者信息

Li Wei, Bottrill Andrew R, Bibb Maureen J, Buttner Mark J, Paget Mark S B, Kleanthous Colin

机构信息

School of Biological Sciences, University of East Anglia, Norwich NR4 7TJ, UK.

出版信息

J Mol Biol. 2003 Oct 17;333(2):461-72. doi: 10.1016/j.jmb.2003.08.038.

Abstract

The regulation of disulphide stress in actinomycetes such as Streptomyces coelicolor is known to involve the zinc-containing anti-sigma factor RsrA that binds and inactivates the redox-regulated sigma factor sigmaR. However, it is not known how RsrA senses disulphide stress nor what role the metal ion plays. Using in vitro assays, we show that while zinc is not required for sigmaR binding it is required for functional anti-sigma factor activity, and that it plays a critical role in modulating the reactivity of RsrA cysteine thiol groups towards oxidation. Apo-RsrA is easily oxidised and, while the Zn-bound form is relatively resistant, the metal ion is readily expelled when the protein is treated with strong oxidants such as diamide. We also show, using a combination of proteolysis and mass spectrometry, that the first critical disulphide to form in RsrA involves Cys11 and one of either Cys41 or Cys44, all previously implicated in metal binding. Circular dichroism spectroscopy was used to follow structural changes during oxidation of RsrA, which indicated that concomitant with formation of this critical disulphide bond is a major restructuring of the protein where its alpha-helical content increases. Our data demonstrate that RsrA can only bind sigmaR in the reduced state and that this state is stabilised by zinc. Redox stress induces disulphide bond formation amongst zinc-ligating residues, expelling the metal ion and stabilising a structure incapable of binding the sigma factor.

摘要

已知在天蓝色链霉菌等放线菌中,二硫键应激的调节涉及含锌的抗σ因子RsrA,它能结合并使氧化还原调节的σ因子σR失活。然而,尚不清楚RsrA如何感知二硫键应激,也不清楚金属离子起什么作用。通过体外试验,我们发现虽然σR结合不需要锌,但功能性抗σ因子活性需要锌,并且锌在调节RsrA半胱氨酸硫醇基团对氧化的反应性方面起关键作用。脱辅基RsrA很容易被氧化,虽然锌结合形式相对抗性较强,但当用二酰胺等强氧化剂处理蛋白质时,金属离子很容易被排出。我们还通过蛋白水解和质谱联用表明,RsrA中形成的第一个关键二硫键涉及Cys11以及Cys41或Cys44中的一个,所有这些残基以前都与金属结合有关。利用圆二色光谱跟踪RsrA氧化过程中的结构变化,结果表明,伴随着这个关键二硫键的形成,蛋白质发生了重大的结构重组,其α螺旋含量增加。我们的数据表明,RsrA只能在还原状态下结合σR,并且这种状态由锌稳定。氧化还原应激诱导锌配位残基之间形成二硫键,排出金属离子并稳定一种无法结合σ因子的结构。

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