Forst S, Kalve I, Durski W
Department of Biological Sciences, University of Wisconsin-Milwaukee 53201, USA.
FEMS Microbiol Lett. 1995 Sep 1;131(2):147-51. doi: 10.1111/j.1574-6968.1995.tb07769.x.
OmpR, the transcriptional regulatory protein of ompF, had not been previously shown to specifically bind to the -70 to -60-bp region of ompF. We show that the -102 to -76-bp sequence of ompF has a high affinity binding site for OmpR and produced a single OmpR/ompF complex (complex b). Extension of this DNA fragment to include an inverted repeat sequence located between the -71 and -64-bp region resulted in the formation of a second, slower migrating complex (complex a). A -102 to -58-bp fragment containing a substitution of the -70 CG bp was able to form complex b, but not complex a. A mutant OmpR protein derived from a strain that can not repress ompF was unable to form complex a, while complex b was formed normally. Deletion of the -70 CG bp resulted in incomplete repression of OmpF. These results suggest that OmpR binds to the -71 to -64-bp region and that this sequence plays a role in the regulation of ompF in Escherichia coli.
OmpR是ompF的转录调节蛋白,此前尚未显示其能特异性结合ompF的-70至-60碱基对区域。我们发现,ompF的-102至-76碱基对序列有一个OmpR的高亲和力结合位点,并产生了一个单一的OmpR/ompF复合物(复合物b)。将该DNA片段延伸至包含位于-71至-64碱基对区域之间的反向重复序列,导致形成了第二个迁移较慢的复合物(复合物a)。一个包含-70 CG碱基对替代的-102至-58碱基对片段能够形成复合物b,但不能形成复合物a。来自一个无法抑制ompF的菌株的突变OmpR蛋白无法形成复合物a,而复合物b则正常形成。删除-70 CG碱基对导致OmpF的抑制不完全。这些结果表明,OmpR结合在-71至-64碱基对区域,且该序列在大肠杆菌中ompF的调节中起作用。