首页> 外文期刊>Journal of bacteriology >Roles of cheY and cheZ gene products in controlling flagellar rotation in bacterial chemotaxis of Escherichia coli.
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Roles of cheY and cheZ gene products in controlling flagellar rotation in bacterial chemotaxis of Escherichia coli.

机译:cheY和cheZ基因产物在控制细菌细菌趋化性鞭毛旋转中的作用。

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To understand output control in bacterial chemotaxis, we varied the levels of expression of cellular cheY and cheZ genes and found that the overproduction of the corresponding proteins affected Escherichia coli swimming behavior. In the absence of other signal-transducing gene products, CheY overproduction made free-swimming cells tumble more frequently. A plot of the fraction of the population that are tumbling versus the CheY concentration was hyperbolic, with half of the population tumbling at 30 microM (25,000 copies per cell) CheY monomers in the cytosol. Overproduction of aspartate receptor (Tar) by 30-fold had a negligible effect on CheY-induced tumbling, so Tar does not sequester CheY. CheZ overproduction decreased tumbling in all tumbling mutants except certain flaAII(cheC) mutants. In the absence of other chemotaxis gene products, CheZ overproduction inhibited CheY-induced tumbling. Models for CheY as a tumbling signal and CheZ as a smooth-swimming signal to control flagellar rotation are discussed.
机译:为了了解细菌趋化性中的输出控制,我们改变了细胞cheY和cheZ基因的表达水平,并发现相应蛋白质的过量生产会影响大肠杆菌的游泳行为。在没有其他信号转导基因产物的情况下,CheY的过量生产使自由游泳的细胞更频繁地翻滚。相对于CheY浓度翻滚的群体比例的曲线是双曲线的,其中一半的群体在细胞溶质中以30 microM(每细胞25,000份)CheY单体翻滚。天冬氨酸受体(Tar)的过量产生30倍对CheY引起的翻滚的影响可忽略不计,因此Tar不会螯合CheY。除某些flaAII(cheC)突变体外,CheZ生产过剩降低了所有翻滚突变体的翻滚。在没有其他趋化性基因产物的情况下,CheZ的过量生产抑制了CheY诱导的翻滚。讨论了将CheY作为滚动信号和将CheZ作为平滑游泳信号来控制鞭毛旋转的模型。

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