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Role of the Intramolecular Disulfide Bond in FlgI the Flagellar P-Ring Component of Escherichia coli

机译:分子内二硫键在大肠杆菌鞭毛P环成分FlgI中的作用

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摘要

The P ring of the bacterial flagellar motor consists of multiple copies of FlgI, a periplasmic protein. The intramolecular disulfide bond in FlgI has previously been reported to be essential for P-ring assembly in Escherichia coli, because the P ring was not assembled in a dsbB strain that was defective for disulfide bond formation in periplasmic proteins. We, however, found that the two Cys residues of FlgI are not conserved in other bacterial species. We then assessed the role of this intramolecular disulfide bond in FlgI. A Cys-eliminated FlgI derivative formed a P ring that complemented the flagellation defect of our ΔflgI strain when it was overproduced, suggesting that disulfide bond formation in FlgI is not absolutely required for P-ring assembly. The levels of the mature forms of the FlgI derivatives were significantly lower than that of wild-type FlgI, although the precursor protein levels were unchanged. Moreover, the FlgI derivatives were more susceptible to degradation than wild-type FlgI. Overproduction of FlgI suppressed the motility defect of ΔdsbB cells. Additionally, the low level of FlgI observed in the ΔdsbB strain increased in the presence of l-cystine, an oxidative agent. We propose that intramolecular disulfide bond formation facilitates the rapid folding of the FlgI monomer to protect against degradation in the periplasmic space, thereby allowing its efficient self-assembly into the P ring.
机译:细菌鞭毛运动的P环由多个拷贝的周质蛋白FlgI组成。以前已经报道了FlgI中的分子内二硫键对于在大肠杆菌中的P环装配是必不可少的,因为P环没有装配在dsbB菌株中,而dsbB菌株在周质蛋白中形成二硫键是有缺陷的。但是,我们发现FlgI的两个Cys残基在其他细菌物种中并不保守。然后,我们评估了分子内二硫键在FlgI中的作用。一个Cys消除的FlgI衍生物形成一个P环,该环在过量生产时与我们的ΔflgI菌株的鞭毛缺陷互补,这表明在Plg环组装中并非绝对需要在FlgI中形成二硫键。尽管前体蛋白水平没有变化,但成熟形式的FlgI衍生物的水平却明显低于野生型FlgI。而且,与野生型FlgI相比,FlgI衍生物更易于降解。 FlgI的过量生产抑制了ΔdsbB细胞的运动性缺陷。另外,在ΔdsbB菌株中观察到的低水平的FlgI在存在氧化剂l-胱氨酸的情况下增加。我们提出分子内二硫键的形成促进了FlgI单体的快速折叠,以防止在周质空间中降解,从而使其有效地自组装成P环。

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