Kainz M, Roberts J W
Section of Biochemistry, Molecular, and Cell Biology, Cornell University, Ithaca, NY 14853, USA.
J Mol Biol. 1995 Dec 15;254(5):808-14. doi: 10.1006/jmbi.1995.0657.
We have measured the kinetics of transcription initiation and pausing by Escherichia coli RNA polymerase (RNAP) at the bacteriophage lambda late promoter, pR's, in growing cells. RNAP initiating transcription from pR' pauses after transcribing 16 or 17 nucleotides, and escape from this pause could in theory be the rate-limiting step in promoter function. We tested this hypothesis by analyzing pausing and non-pausing variants of both the pR' promoter segment and a more active mutant version of pR'; we measured reporter gene expression and used KMnO4 footprinting to measure directly occupancy of the promoter and pause sites in growing cells. We find that RNAP paused at +16/+17 does not limit expression of pR'. However, RNAP paused at +16/+17 does limit expression from the more active promoter by impeding formation of open complex. Therefore, the activity of the late gene regulatory protein Q to suppress the early pause, in addition to its antitermination activity, is unlikely to be important in phage gene expression.
我们已经在生长细胞中测量了大肠杆菌RNA聚合酶(RNAP)在噬菌体λ晚期启动子pR'处的转录起始和暂停动力学。从pR'起始转录的RNAP在转录16或17个核苷酸后会暂停,理论上从该暂停中逃逸可能是启动子功能中的限速步骤。我们通过分析pR'启动子片段的暂停和非暂停变体以及pR'的一个更活跃的突变版本来检验这一假设;我们测量了报告基因的表达,并使用高锰酸钾足迹法直接测量生长细胞中启动子和暂停位点的占据情况。我们发现,在+16/+17处暂停的RNAP并不限制pR'的表达。然而,在+16/+17处暂停的RNAP确实会通过阻碍开放复合物的形成来限制更活跃启动子的表达。因此,晚期基因调节蛋白Q抑制早期暂停的活性,除了其抗终止活性外,在噬菌体基因表达中不太可能起重要作用。