Richard Cynthia L, Tandon Animesh, Sloan Nathaniel R, Kranz Robert G
Department of Biology, Washington University, St. Louis, Missouri 63130, USA.
J Biol Chem. 2003 Aug 22;278(34):31701-8. doi: 10.1074/jbc.M304430200. Epub 2003 Jun 6.
Rhodobacter capsulatus NtrC is an enhancer-binding protein that activates transcription of the R. capsulatus sigma 70 RNA polymerase, but does not activate the Escherichia coli sigma 70-RNA polymerase at the nifA1 promoter. We utilized R. capsulatus:E. coli hybrid RNA polymerases assembled in vitro to investigate the subunits required for protein-protein interaction with RcNtrC at the nifA1mut1 promoter. Assembly of core Rc alpha beta beta' or hybrid RNA polymerases containing the Rc beta beta' subunits absolutely require the inclusion of an omega subunit, with the Ec omega subunit only partially promoting RNA polymerase assembly. The Rc alpha Ec beta beta' RNA polymerase is not activated by RcNtrC. Moreover, a mutant form of the Rc alpha lacking the alpha C-terminal domain, when assembled with the Rc beta beta'omega and sigma 70 subunits, is activated by RcNtrC. These results suggest that the R. capsulatus alpha subunit is not important for RcNtrC interaction. All hybrid RNA polymerases that contained the Rc beta' were activated by RcNtrC, suggesting that the Rc beta' subunit plays an important role. It is proposed that RcNtrC recruits R. capsulatus sigma 70-RNA polymerase to the promoter through interaction with Rc beta'. RcNtrC interacts with RNA polymerase from a unique position, with dimers centered at -118 bp from the start site. Placing the RcNtrC tandem binding sites on the opposite face of the helix (-113 bp) completely abolished transcription activation. Moving the RcNtrC tandem binding sites 20 bp closer to or further from the promoter significantly reduced activation, again suggesting unique spatial constraints on how RcNtrC interacts with the R. capsulatus RNA polymerase.
荚膜红细菌NtrC是一种增强子结合蛋白,可激活荚膜红细菌σ70 RNA聚合酶的转录,但不能在nifA1启动子处激活大肠杆菌σ70 - RNA聚合酶。我们利用体外组装的荚膜红细菌:大肠杆菌杂交RNA聚合酶,研究在nifA1mut1启动子处与RcNtrC进行蛋白质 - 蛋白质相互作用所需的亚基。核心Rcαββ'或含有Rcββ'亚基的杂交RNA聚合酶的组装绝对需要包含一个ω亚基,而Ecω亚基仅部分促进RNA聚合酶的组装。RcαEcββ' RNA聚合酶不能被RcNtrC激活。此外,缺少α C末端结构域的Rcα突变形式,与Rcββ'ω和σ70亚基组装时,可被RcNtrC激活。这些结果表明,荚膜红细菌α亚基对RcNtrC相互作用并不重要。所有含有Rcβ'的杂交RNA聚合酶都被RcNtrC激活,表明Rcβ'亚基起重要作用。有人提出,RcNtrC通过与Rcβ'相互作用将荚膜红细菌σ70 - RNA聚合酶招募到启动子处。RcNtrC从一个独特的位置与RNA聚合酶相互作用,二聚体位于起始位点上游 - 118 bp处。将RcNtrC串联结合位点置于螺旋的相反面( - 113 bp)完全消除了转录激活。将RcNtrC串联结合位点向启动子靠近或远离20 bp会显著降低激活,这再次表明RcNtrC与荚膜红细菌RNA聚合酶相互作用存在独特的空间限制。