Donato G M, Lelivelt M J, Kawula T H
Department of Microbiology and Immunology, University of North Carolina School of Medicine, Chapel Hill 27599, USA.
J Bacteriol. 1997 Nov;179(21):6618-25. doi: 10.1128/jb.179.21.6618-6625.1997.
The H-NS protein is a major component of the Escherichia coli nucleoid. Mutations in hns, the gene encoding H-NS, have pleiotropic effects on the cell altering both the expression of a variety of unlinked genes and the inversion rate of the DNA element containing the fimA promoter. We investigated the interaction between H-NS and fimB, the gene encoding the bidirectional recombinase that catalyzes fimA promoter flipping. In beta-galactosidase assays, we found that fimB expression increased approximately fivefold in an hns2-tetR insertion mutant. In gel mobility shift assays with purified H-NS, we have also shown that H-NS bound directly and cooperatively to the fimB promoter region with greater affinity than for any other known H-NS-regulated gene. Furthermore, this high-affinity interaction resulted in a promoter-specific inhibition of fimB transcription. The addition of purified H-NS to an in vitro transcription system yielded a fivefold or greater reduction in fimB-specific mRNA production. However, the marked increase in cellular FimB levels in the absence of H-NS was not the primary cause of the mutant rapid inversion phenotype. These results are discussed in regard to both H-NS as a transcriptional repressor of fimB expression and its role in regulating type 1 pilus promoter inversion.
H-NS蛋白是大肠杆菌类核的主要成分。编码H-NS的基因hns发生突变,会对细胞产生多效性影响,改变多种不相关基因的表达以及包含fimA启动子的DNA元件的倒位率。我们研究了H-NS与fimB之间的相互作用,fimB是编码催化fimA启动子翻转的双向重组酶的基因。在β-半乳糖苷酶分析中,我们发现fimB的表达在hns2 - tetR插入突变体中增加了约五倍。在使用纯化的H-NS进行的凝胶迁移率变动分析中,我们还表明,H-NS直接且协同地结合到fimB启动子区域,其亲和力高于任何其他已知的受H-NS调控的基因。此外,这种高亲和力相互作用导致fimB转录受到启动子特异性抑制。向体外转录系统中添加纯化的H-NS会使fimB特异性mRNA产量降低五倍或更多。然而,在没有H-NS的情况下细胞中FimB水平的显著增加并不是突变体快速倒位表型的主要原因。我们将结合H-NS作为fimB表达的转录抑制因子及其在调节1型菌毛启动子倒位中的作用来讨论这些结果。