Arthur T M, Burgess R R
McArdle Laboratory for Cancer Research, University of Wisconsin, Madison, Wisconsin 53706, USA.
J Biol Chem. 1998 Nov 20;273(47):31381-7. doi: 10.1074/jbc.273.47.31381.
The Escherichia coli genome encodes genes for seven different sigma subunit species while only having single genes for the alpha, beta, and beta' subunits that make up the RNA polymerase core enzyme. The various sigma factors compete for binding to the core enzyme, upon which they confer promoter DNA-specific transcription initiation to the polymerase. We have mapped a major interaction site between one of the sigma species, sigma70, and beta'. Using far-Western blotting analysis of chemically cleaved and genetically engineered protein fragments, we have identified a N-terminal fragment of beta' (residues 60-309) that could bind sigma70. We were able to more precisely map the interaction domain to amino acid residues 260-309 of beta' using nickel nitrilotriacetic acid co-immobilization assays.
大肠杆菌基因组编码七种不同的σ亚基种类的基因,而组成RNA聚合酶核心酶的α、β和β'亚基却只有单个基因。各种σ因子竞争与核心酶的结合,结合后它们赋予聚合酶启动子DNA特异性转录起始的能力。我们已经绘制了一种σ因子σ70与β'之间的一个主要相互作用位点。通过对化学切割和基因工程改造的蛋白质片段进行远Western印迹分析,我们鉴定出了β'的一个N端片段(第60 - 309位氨基酸残基)能够结合σ70。利用次氮基三乙酸镍共固定化测定法,我们能够将相互作用结构域更精确地定位到β'的第260 - 309位氨基酸残基。