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Functions of the subunits in the FlhD(2)C(2) transcriptional master regulator of bacterial flagellum biogenesis and swarming

机译:FlhD(2)C(2)细菌鞭毛生物发生和成群的FlhD(2)C(2)转录主调节剂中的功能

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In enterobacteria like Salmonella, biogenesis of cell surface flagella needed for motility is dependent upon the master operon flhDC at the apex of the flagellar gene hierarchy. The operon products FLhD and FLhC act together in a FLhD(2)C(2) heterotetramer to induce flagellar gene transcription, while FLhD also represses cell septation. The flhDC operon is pivotal to differentiation into elongated hyperflagellated swarm cells that undergo multicellular migration, most strikingly in Proteus. We set out to establish the mechanism of action of the FLhD(2)C(2) multimer. In Proteus swarm cell extracts, all the FLhC was assembled into the FLhD(2)C(2) transcription activator, but FLhD additionally formed approximately equimolar amounts of a FLhD, homodimer. Both FLhD and FLhC subunits homodimerised in vivo and in vitro, suggesting that self-interactions stabilise the FLhD(2)C(2) complex. The FlhC and FLhD subunit proteins were separately expressed and purified, and the FLhD(2)C(2) heterotetramer was reconstituted in vitro. Purified FLhC bound specifically and cooperatively to the promoter region of the flhDC-regulated flhB flagellar gene in the absence of FLhD. Purified FLhD was unable to bind this target DNA, but binding by the FLhD(2)C(2) complex was approximately tenfold greater than the FLhC subunit alone, suggesting that FLhD potentiated the FLhC/DNA interaction. Ln support of this possibility, pre-incubation of FLhC with FlhD reduced the apparent dissociation constant, KD, for the FLhC/DNA complex from 100 nM to 13 nM. Furthermore, in competition assays, FLhD substantially increased the specificity of DNA recognition by FlhC, and also stabilised the resultant labile protein/DNA complex, prolonging its half-life from around two minutes to more than 40 minutes. FLhD(2)C(2) is therefore an atypical prokaryotic transcription activator in which interaction of the FlhC subunit with DNA target sequences is enhanced by the coexpressed helper subunit FLhD. (C) 2000 Academic Press. [References: 40]
机译:在像沙门氏菌这样的肠杆菌中,运动所需的细胞表面鞭毛的生物发生取决于鞭毛基因层次顶端的操纵子flhDC。操纵子产物FLhD和FLhC在FLhD(2)C(2)异四聚体中共同起作用,以诱导鞭毛基因转录,而FLhD也抑制细胞分离。 flhDC操纵子对于分化成细长的鞭毛成群细胞至关重要,这些细胞经历了多细胞迁移,最明显的是在变形杆菌中。我们着手建立FLhD(2)C(2)多聚体的作用机制。在变形杆菌群细胞提取物中,所有FLhC都组装到FLhD(2)C(2)转录激活剂中,但FLhD还形成了大约等摩尔量的FLhD同型二聚体。 FLhD和FLhC亚基在体内和体外均二聚,表明自我相互作用稳定了FLhD(2)C(2)复合物。分别表达和纯化了FLhC和FLhD亚基蛋白,并在体外重建了FLhD(2)C(2)异四聚体。在没有FLhD的情况下,纯化的FLhC与flhDC调节的flhB鞭毛基因的启动子区域特异性且协同地结合。纯化的FLhD无法结合该目标DNA,但与FLhD(2)C(2)复合物的结合大约比单独的FLhC亚基大十倍,这表明FLhD增强了FLhC / DNA的相互作用。为了支持这种可能性,FLhC与FlhD的预孵育将FLhC / DNA复合物的表观解离常数KD从100 nM降低到13 nM。此外,在竞争分析中,FLhD大大提高了FlhC对DNA识别的特异性,并且还稳定了不稳定的蛋白质/ DNA复合物,将其半衰期从大约2分钟延长至40分钟以上。因此,FLhD(2)C(2)是一种非典型的原核转录激活因子,其中,FlhC亚基与DNA靶序列的相互作用被共表达的辅助亚基FLhD增强。 (C)2000学术出版社。 [参考:40]

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