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大肠杆菌K-12渗透压调节的主要外膜蛋白ompF和ompC基因之间的启动子交换

Promoter exchange between ompF and ompC, genes for osmoregulated major outer membrane proteins of Escherichia coli K-12.

作者信息

Matsuyama S, Inokuchi K, Mizushima S

出版信息

J Bacteriol. 1984 Jun;158(3):1041-7. doi: 10.1128/jb.158.3.1041-1047.1984.

Abstract

Expression of the ompF and ompC genes coding for major outer membrane proteins OmpF and OmpC is regulated in opposite directions by medium osmolarity. Chimera genes were constructed by a reciprocal exchange of the promoter-signal sequence region between the two genes. The chimera gene construction was designed so that the proteins synthesized by these genes were essentially the same as the OmpC and OmpF proteins. Studies with the chimera genes demonstrated that the osmoregulation of the OmpF-OmpC synthesis was promoter dependent. They also showed that cells grew normally even when the osmoregulation took place in opposite directions. The effects of the ompR2 and envZ mutations, which suppress ompC and ompF expression, respectively, also became reversed. The reduced expression was still subject to the promoter-controlled osmoregulation. Based on these observations, the mechanism of regulation of the ompF-ompC gene expression and its physiological importance are discussed.

摘要

编码主要外膜蛋白OmpF和OmpC的ompF和ompC基因的表达受培养基渗透压的反向调节。通过两个基因之间启动子-信号序列区域的相互交换构建了嵌合基因。嵌合基因的构建设计使得由这些基因合成的蛋白质与OmpC和OmpF蛋白基本相同。对嵌合基因的研究表明,OmpF - OmpC合成的渗透调节依赖于启动子。研究还表明,即使渗透调节以相反方向发生,细胞也能正常生长。分别抑制ompC和ompF表达的ompR2和envZ突变的影响也发生了逆转。表达降低仍受启动子控制的渗透调节。基于这些观察结果,讨论了ompF - ompC基因表达的调节机制及其生理重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/435f/215548/8f48da2d4722/jbacter00235-0287-a.jpg

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