Ogawa Ayano, Kojima Fumika, Miyake Yukari, Yoshimura Miho, Ishijima Nozomi, Iyoda Sunao, Sekine Yasuhiko, Yamanaka Yuki, Yamamoto Kaneyoshi
Department of Frontier Bioscience, Hosei University, Tokyo, Japan.
Microbial Physiology Laboratory, Department of Gene Function and Phenomics, National Institute of Genetics, Mishima, Japan.
Genes Cells. 2022 Nov;27(11):657-674. doi: 10.1111/gtc.12982. Epub 2022 Sep 18.
Escherichia coli (E. coli) has multiple copies of the chaperone-usher (CU) pili operon in five fimbria groups: CU pili, curli, type IV pili, type III secretion pili, and type IV secretion pili. Commensal E. coli K-12 contains 12 CU pili operons. Among these operons, Sfm is expressed by the sfmACDHF operon. Transcriptome analyses, reporter assays, and chromatin immunoprecipitation PCR analyses reported that FimZ directly binds to and activates the sfmA promoter, transcribing sfmACDHF. In addition, FimZ regularly induces constant cell elongation in E. coli, which is required for F-type ATPase function. The bacterial two-hybrid system showed a specific interaction between FimZ and the α subunit of the cytoplasmic F domain of F-type ATPase. Studies performed using mutated FimZs have revealed two active forms, I and II. Active form I is required for constant cell elongation involving amino acid residues K106 and D109. Active form II additionally required D56, a putative phosphorylation site, to activate the sfmA promoter. The chromosomal fimZ was hardly expressed in parent strain but functioned in phoB and phoP double-gene knockout strains. These insights may help to understand bacterial invasion restricted host environments by the sfm γ-type pili.
大肠杆菌(E. coli)在五个菌毛组中具有多个伴侣-usher(CU)菌毛操纵子拷贝:CU菌毛、卷曲菌毛、IV型菌毛、III型分泌菌毛和IV型分泌菌毛。共生大肠杆菌K-12含有12个CU菌毛操纵子。在这些操纵子中,Sfm由sfmACDHF操纵子表达。转录组分析、报告基因检测和染色质免疫沉淀PCR分析表明,FimZ直接结合并激活sfmA启动子,转录sfmACDHF。此外,FimZ经常诱导大肠杆菌中的细胞持续伸长,这是F型ATP酶功能所必需的。细菌双杂交系统显示FimZ与F型ATP酶细胞质F结构域的α亚基之间存在特异性相互作用。使用突变的FimZ进行的研究揭示了两种活性形式,I和II。活性形式I是涉及氨基酸残基K106和D109的细胞持续伸长所必需的。活性形式II还需要D56(一个假定的磷酸化位点)来激活sfmA启动子。染色体上的fimZ在亲本菌株中几乎不表达,但在phoB和phoP双基因敲除菌株中起作用。这些见解可能有助于理解sfmγ型菌毛对细菌侵入受限宿主环境的影响。