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首页> 外文期刊>Journal of bacteriology >Regulated underexpression and overexpression of the FliN protein of Escherichia coli and evidence for an interaction between FliN and FliM in the flagellar motor.
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Regulated underexpression and overexpression of the FliN protein of Escherichia coli and evidence for an interaction between FliN and FliM in the flagellar motor.

机译:大肠杆菌FliN蛋白的表达不足和过度表达,以及鞭毛运动中FliN和FliM之间相互作用的证据。

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The FliN protein of Escherichia coli is essential for the assembly and function of flagella. Here, we report the effects of regulated underexpression and overexpression of FliN in a fliN null strain. Cells that lack the FliN protein do not make flagella. When FliN is underexpressed, cells produce relatively few flagella and those made are defective, rotating at subnormal, rapidly varying speeds. These results are similar to what was seen previously when the flagellar protein FliM was underexpressed and unlike what was seen when the motility proteins MotA and MotB were underexpressed. Overexpression of FliN impairs motility and flagellation, as has been reported previously for FliM, but when FliN and FliM are co-overexpressed, motility is much less impaired. This and additional evidence presented indicate that FliM and FliN are associated in the flagellar motor, in a structure distinct from the MotA/MotB torque generators. A recent study showed that FliN might be involved in the export of flagellar components during assembly (A. P. Vogler, M. Homma, V. M. Irikura, and R. M. Macnab, J. Bacteriol. 173:3564-3572, 1991). We show here that approximately 50 amino acid residues from the amino terminus of FliN are dispensable for function and that the remaining, essential part of FliN has sequence similarity to a part of Spa33, a protein that functions in transmembrane export in Shigella flexneri. Thus, FliN might function primarily in flagellar export, rather than in torque generation, as has sometimes been supposed.
机译:大肠杆菌的FliN蛋白对于鞭毛的组装和功能至关重要。在这里,我们报告在fliN null株中FliN的调节不足和过度表达的影响。缺少FliN蛋白的细胞不会产生鞭毛。当FliN表达不足时,细胞产生相对较少的鞭毛,而产生的细胞则有缺陷,以不正常的,快速变化的速度旋转。这些结果类似于先前在鞭毛蛋白FliM的表达不足时看到的结果,而与在运动蛋白MotA和MotB的表达不足时看到的结果相似。 FliN的过表达损害了运动能力和鞭毛形成,正如先前报道的FliM一样,但是当FliN和FliM共同过表达时,运动能力受到的损害要小得多。提出的这些证据和其他证据表明,FliM和FliN与鞭毛马达相关,其结构不同于MotA / MotB扭矩发生器。最近的一项研究表明,FliN可能在装配过程中参与鞭毛成分的输出(A. P. Vogler,M。Homma,V。M. Irikura和R. M. Macnab,J。Bacteriol。173:3564-3572,1991)。我们在这里显示,FliN氨基末端约有50个氨基酸残基对于功能而言是可有可无的,而FliN的其余必不可少的部分与Spa33的一部分具有序列相似性,Spa33是一种在弗氏志贺氏菌跨膜输出中起作用的蛋白质。因此,FliN可能主要在鞭毛输出中发挥作用,而不是像有时认为的那样在扭矩产生中起作用。

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