Parkinson J S
J Bacteriol. 1978 Jul;135(1):45-53. doi: 10.1128/jb.135.1.45-53.1978.
Motile, but generally nonchemotactic (che) mutants of Escherichia coli were examined for complementation and recombination with specialized lambdafla transducing phages. The complex complementation behavior of these mutants found previously in F-prime tests could largely be accounted for by intragenic complementation and by polarity effects. Mutants of the "cheA" class defined two genes, cheA and cheW, which appeared to be contranscribed. Mutants of the "cheB" class defined four genes, cheX, cheB, cheY, and cheZ, which also constituted a transcriptional unit. Mutants defective in cheA, cheW, cheX, or cheY function swam smoothly, with little or no tumbling, whereas cheB or cheZ mutants exhibited very high tumbling rates. These functions are probably involved in initiating of controlling changes in flagellar rotation in response to chemotactic stimuli.
对大肠杆菌的运动但通常无趋化性(che)突变体进行了检测,以研究其与专门的λfla转导噬菌体的互补作用和重组情况。先前在F-prime试验中发现的这些突变体的复杂互补行为,在很大程度上可以通过基因内互补和极性效应来解释。“cheA”类突变体定义了两个基因,cheA和cheW,它们似乎是共转录的。“cheB”类突变体定义了四个基因,cheX、cheB、cheY和cheZ,它们也构成一个转录单元。cheA、cheW、cheX或cheY功能有缺陷的突变体游动平稳,很少或没有翻滚,而cheB或cheZ突变体则表现出非常高的翻滚率。这些功能可能参与启动或控制鞭毛旋转以响应趋化刺激的变化。