Marr Michael T, Roberts Jeffrey W, Brown Susan E, Klee Matthew, Gussin Gary N
Department of Molecular Biology and Genetics, Cornell University, Ithaca, NY, USA.
Nucleic Acids Res. 2004 Feb 10;32(3):1083-90. doi: 10.1093/nar/gkh261. Print 2004.
The DNA recognition sequence for the transcriptional activator, CII protein, which is critical for lysogenization by bacteriophage lambda, overlaps the -35 region of the P(RE) promoter. Data presented here show that activation by CII does not change the pattern of cleavage of the -35 region of P(RE) by iron (S)-1-(p-bromoacetamidobenzyl)-EDTA (Fe-BABE) conjugated to the sigma subunit of RNA polymerase (RNAP). Thus, the overall interaction between sigma and the -35 region of P(RE) is not significantly altered by CII. Therefore, the effects of the activator on RNAP binding to the promoter and formation of open complexes do not reflect a large-scale qualitative change in the nature of the interaction between RNAP and promoter DNA. The ability of CII to stimulate lysogenization is reduced in the presence of plasmid-borne rpoA variants encoding alanine substitutions at several positions in the C-terminal domain of the alpha subunit. However, it has not been possible to identify residues that directly affect the interaction between the activator and RNA polymerase.
转录激活因子CII蛋白的DNA识别序列对于噬菌体λ的溶原化至关重要,它与P(RE)启动子的-35区域重叠。此处呈现的数据表明,CII的激活不会改变与RNA聚合酶(RNAP)的σ亚基偶联的铁(S)-1-(对溴乙酰氨基苄基)-EDTA(Fe-BABE)对P(RE) -35区域的切割模式。因此,σ与P(RE) -35区域之间的整体相互作用不会因CII而发生显著改变。所以,激活因子对RNAP与启动子结合以及开放复合物形成的影响并不反映RNAP与启动子DNA之间相互作用性质的大规模定性变化。在存在编码α亚基C末端结构域中几个位置丙氨酸替代的质粒携带的rpoA变体时,CII刺激溶原化的能力会降低。然而,尚未能够鉴定出直接影响激活因子与RNA聚合酶之间相互作用的残基。