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首页> 外文期刊>Molecular Microbiology >The TolQ-TolR proteins energize TolA and share homologies with the flagellar motor proteins MotA-MotB.
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The TolQ-TolR proteins energize TolA and share homologies with the flagellar motor proteins MotA-MotB.

机译:TolQ-TolR蛋白可以激发TolA并与鞭毛运动蛋白MotA-MotB同源。

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摘要

The Tol-Pal system of Escherichia coli is required for the maintenance of outer membrane stability. Recently, proton motive force (pmf) has been found to be necessary for the co-precipitation of the outer membrane lipoprotein Pal with the inner membrane TolA protein, indicating that the Tol-Pal system forms a transmembrane link in which TolA is energized. In this study, we show that both TolQ and TolR proteins are essential for the TolA-Pal interaction. A point mutation within the third transmembrane (TM) segment of TolQ was found to affect the TolA-Pal interaction strongly, whereas suppressor mutations within the TM segment of TolR restored this interaction. Modifying the Asp residue within the TM region of TolR indicated that an acidic residue was important for the pmf-dependent interaction of TolA with Pal and outer membrane stabilization. Analysis of sequence alignments of TolQ and TolR homologues from numerous Gram-negative bacterial genomes, together with analyses of the different tolQ-tolR mutants, revealed that the TM domains of TolQ and TolR present structural and functional homologies not only to ExbB and ExbD of the TonB system but also with MotA and MotB of the flagellar motor. The function of these three systems, as ion potential-driven molecular motors, is discussed
机译:维持外膜稳定性需要大肠杆菌的Tol-Pal系统。最近,已经发现质子动力(pmf)对于外膜脂蛋白Pal与内膜TolA蛋白的共沉淀是必需的,这表明Tol-Pal系统形成跨膜连接,在该跨膜连接中TolA被通电。在这项研究中,我们表明TolQ和TolR蛋白对于TolA-Pal相互作用都是必不可少的。发现TolQ的第三个跨膜(TM)片段内的点突变强烈影响TolA-Pal相互作用,而TolR的TM片段内的抑制子突变恢复了这种相互作用。修饰TolR TM区域内的Asp残基表明,酸性残基对于TolA与Pal和外部膜稳定的pmf依赖性相互作用至关重要。来自众多革兰氏阴性细菌基因组的TolQ和TolR同源物的序列比对分析以及对不同tolQ-tolR突变体的分析表明,TolQ和TolR的TM结构域不仅对结构域的ExbB和ExbD呈现结构和功能同源性。 TonB系统还可以与MotA和MotB的鞭毛马达一起使用。讨论了这三种系统作为离子势驱动分子电动机的功能

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