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首页> 外文期刊>Nucleic Acids Research >Role of the RNA polymerase α subunits in CII-dependent activation of the bacteriophage λ pE promoter: identification of important residues and positioning of the α C-terminal domains
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Role of the RNA polymerase α subunits in CII-dependent activation of the bacteriophage λ pE promoter: identification of important residues and positioning of the α C-terminal domains

机译:RNA聚合酶α亚基在噬菌体λpE启动子的CII依赖性激活中的作用:重要残基的鉴定和αC末端结构域的定位

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摘要

The bacteriophage λ CII protein stimulates the activity of three phage promoters, pE, pI and paQ, upon binding to a site overlapping the –35 element at each promoter. Here we used preparations of RNA polymerase carrying a DNA cleavage reagent attached to specific residues in the C-terminal domain of the RNA polymerase subunit (αCTD) to demonstrate that one CTD binds near position –41 at pE, whilst the other CTD binds further upstream. The αCTD bound near position –41 is oriented such that its 261 determinant is in close proximity to 70. The location of αCTD in CII-dependent complexes at the pE promoter is very similar to that found at many activator-independent promoters, and represents an alternative configuration for αCTD at promoters where activators bind sites overlapping the –35 region. We also used an in vivo alanine scan analysis to show that the DNA-binding determinant of αCTD is involved in stimulation of the pE promoter by CII, and this was confirmed by in vitro transcription assays. We also show that whereas the K271E substitution in αCTD results in a drastic decrease in CII-dependent activation of pE, the pI and paQ promoters are less sensitive to this substitution, suggesting that the role of αCTD at the three lysogenic promoters may be different.
机译:噬菌体λCII蛋白在结合到每个启动子上与–35元素重叠的位点时,刺激了三个噬菌体启动子pE,pI和paQ的活性。在这里,我们使用了带有DNA裂解试剂的RNA聚合酶制剂,该试剂附着在RNA聚合酶亚基(αCTD)C端结构域的特定残基上,证明一个CTD结合在pE的–41位附近,而另一个CTD结合在上游。定位在–41附近的αCTD的方向应使其261行列式非常接近70。在pE启动子上CII依赖性复合物中αCTD的位置与许多不依赖激活剂的启动子非常相似,并且代表αCTD在启动子处的另一种配置,其中激活子结合与–35区重叠的位点。我们还使用了体内丙氨酸扫描分析,以显示αCTD的DNA结合决定簇与CII对pE启动子的刺激有关,这一点已通过体外转录分析得到了证实。我们还显示,尽管αCTD中的K271E替代导致pII的CII依赖性激活的急剧减少,但pI和paQ启动子对这种替代不太敏感,这表明αCTD在三个溶原性启动子上的作用可能不同。

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