Owens J T, Miyake R, Murakami K, Chmura A J, Fujita N, Ishihama A, Meares C F
Department of Chemistry, University of California, One Shields Avenue, Davis, CA 95616, USA.
Proc Natl Acad Sci U S A. 1998 May 26;95(11):6021-6. doi: 10.1073/pnas.95.11.6021.
The core enzyme of Escherichia coli RNA polymerase acquires essential promoter recognition and transcription initiation activities by binding one of several sigma subunits. To characterize the proximity between sigma70, the major sigma for transcription of the growth-related genes, and the core enzyme subunits (alpha2 beta beta'), we analyzed the protein-cutting patterns produced by a set of covalently tethered FeEDTA probes [FeBABE: Fe (S)-1-(p-bromoacetamidobenzyl)EDTA]. The probes were positioned in or near conserved regions of sigma70 by using seven mutants, each carrying a single cysteine residue at position 132, 376, 396, 422, 496, 517, or 581. Each FeBABE-conjugated sigma70 was bound to the core enzyme, which led to cleavage of nearby sites on the beta and beta' subunits (but not alpha). Unlike the results of random cleavage [Greiner, D. P., Hughes, K. A., Gunasekera, A. H. & Meares, C. F. (1996) Proc. Natl. Acad. Sci. USA 93, 71-75], the cut sites from different probe-modified sigma70 proteins are clustered in distinct regions of the subunits. On the beta subunit, cleavage is observed in two regions, one between residues 383 and 554, including the conserved C and Rif regions; and the other between 854 and 1022, including conserved region G, regions of ppGpp sensitivity, and one of the segments forming the catalytic center of RNA polymerase. On the beta' subunit, the cleavage was identified within the sequence 228-461, including beta' conserved regions C and D (which comprise part of the catalytic center).
大肠杆菌RNA聚合酶的核心酶通过结合几种σ亚基之一来获得关键的启动子识别和转录起始活性。为了表征与生长相关基因转录的主要σ因子σ70和核心酶亚基(α2ββ')之间的接近程度,我们分析了一组共价连接的FeEDTA探针[FeBABE:Fe(S)-1-(对溴乙酰氨基苄基)乙二胺四乙酸]产生的蛋白质切割模式。通过使用七个突变体将探针定位在σ70的保守区域内或附近,每个突变体在位置132、376、396、422、496、517或581处携带一个半胱氨酸残基。每个与FeBABE偶联的σ70都与核心酶结合,这导致β和β'亚基(而非α亚基)上的附近位点发生切割。与随机切割的结果[Greiner, D. P., Hughes, K. A., Gunasekera, A. H. & Meares, C. F. (1996) Proc. Natl. Acad. Sci. USA 93, 71 - 75]不同,来自不同探针修饰的σ70蛋白的切割位点聚集在亚基的不同区域。在β亚基上,在两个区域观察到切割,一个在残基383和554之间,包括保守的C和Rif区域;另一个在854和1022之间,包括保守区域G、ppGpp敏感区域以及形成RNA聚合酶催化中心的片段之一。在β'亚基上,切割在序列228 - 461内被鉴定出来,包括β'保守区域C和D(其构成催化中心的一部分)。