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A staphylococcal anti-sigma factor possesses a single-domain carries different denaturant-sensitive regions and unfolds via two intermediates

机译:葡萄球菌抗-sigma因子具有一个域携带不同的变性剂敏感区并通过两个中间体展开

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摘要

RsbW, an anti-sigma factor possessing kinase activity, is expressed by many Gram-positive bacteria including Staphylococcus aureus. To obtain clues about the domain structure and the folding-unfolding mechanism of RsbW, we have elaborately studied rRsbW, a recombinant S. aureus RsbW. Sequence analysis of the protein fragments, generated by the limited proteolysis of rRsbW, has proposed it to be a single-domain protein. The unfolding of rRsbW in the presence of GdnCl or urea was completely reversible in nature and occurred through the formation of at least two intermediates. The structure, shape, and the surface hydrophobicity of no intermediate completely matches with those of other intermediates or the native rRsbW. Interestingly, one of the intermediates, formed in the presence of less GdnCl concentrations, has a molten globule-like structure. Conversely, all of the intermediates, like native rRsbW, exist as dimers in aqueous solution. The putative molten globule and the urea-generated intermediates also have retained some kinase activity. Additionally, the putative ATP binding site/catalytic site of rRsbW shows higher denaturant sensitivity than the tentative dimerization region of this enzyme.
机译:RsbW是一种具有激酶活性的抗sigma因子,在许多革兰氏阳性细菌(包括金黄色葡萄球菌)中表达。为了获得有关RsbW的域结构和折叠-展开机制的线索,我们精心研究了重组金黄色葡萄球菌RsbW rRsbW。由rRsbW的有限蛋白水解产生的蛋白质片段的序列分析表明,它是单结构域蛋白质。本质上,在GdnCl或尿素存在下rRsbW的解开是完全可逆的,并且通过形成至少两种中间体而发生。没有中间体的结构,形状和表面疏水性与其他中间体或天然rRsbW完全匹配。有趣的是,在较少的GdnCl浓度下形成的中间体之一具有熔融的球状结构。相反,所有中间体,如天然rRsbW,在水溶液中均以二聚体形式存在。假定的熔融小球和尿素生成的中间体也保留了一些激酶活性。此外,rRsbW的假定的ATP结合位点/催化位点显示出比该酶的暂定二聚化区更高的变性敏感性。

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