Toussaint B, de Sury d'Aspremont R, Delic-Attree I, Berchet V, Elsen S, Colbeau A, Dischert W, Lazzaroni Y, Vignais P M
Département de Biologie Moléculaire et Structurale, CEA/Grenoble, France.
Mol Microbiol. 1997 Dec;26(5):927-37. doi: 10.1046/j.1365-2958.1997.6291996.x.
The [NiFe]hydrogenase of the photosynthetic bacterium Rhodobacter capsulatus is encoded by the structural hupSLC operon, the expression of which is induced by H2. H2 activation was no longer observable in chromosomal hupR mutants, an indication that HupR is implicated directly in the activation by H2 of hupS gene expression. The transcriptional start site of the hupS promoter, determined by primer extension mapping, was located 55 nucleotides upstream from the translational start codon of the hupS gene. Regulatory sequences were identified by serial 5' deletions of the 300bp hupS promoter-regulatory region (phupS) and phupS-lacZ translational fusions. Cis-regulatory sequences capable of interacting with two transcription factors, IHF and HupR, a response regulator of the NtrC subfamily, were studied by electrophoretic mobility shift assays (EMSAs). The R. capsulatus IHF and HupR proteins were overexpressed in Escherichia coli and purified by affinity chromatography. IHF binds to a site, 5'-TCACACACCATTG, centred at -87 nt from the transcription start site. The HupR protein binds to one site within the -162 to -152 nt region, which contains the palindromic sequence 5'-TTG-R5-CAA. By the use of 5' deletions and site-directed mutagenesis of the -162/-152 region, this palindrome was shown to be required for in vivo hupS transcriptional activation by H2.
光合细菌荚膜红细菌的[NiFe]氢化酶由结构hupSLC操纵子编码,其表达由H2诱导。在染色体hupR突变体中不再能观察到H2激活,这表明HupR直接参与H2对hupS基因表达的激活。通过引物延伸图谱确定的hupS启动子的转录起始位点位于hupS基因翻译起始密码子上游55个核苷酸处。通过对300bp的hupS启动子调控区域(phupS)进行连续5'缺失和phupS-lacZ翻译融合来鉴定调控序列。通过电泳迁移率变动分析(EMSA)研究了能够与两种转录因子IHF和HupR(NtrC亚家族的应答调节因子)相互作用的顺式调控序列。荚膜红细菌的IHF和HupR蛋白在大肠杆菌中过表达并通过亲和层析纯化。IHF结合到一个位点5'-TCACACACCATTG,该位点以距转录起始位点-87 nt为中心。HupR蛋白结合到-162至-152 nt区域内的一个位点,该区域包含回文序列5'-TTG-R5-CAA。通过对-162 / -152区域进行5'缺失和定点诱变,表明该回文序列是体内H2对hupS转录激活所必需的。