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大肠杆菌噬菌体λ的p'R启动子的改变会同时影响其活性以及与整合宿主因子(IHF)的相互作用。

Alterations in the p'R promoter of coliphage lambda modify both its activity and interaction with the integration host factor (IHF).

作者信息

Kur J, Hasan N, Szybalski W

机构信息

McArdle Laboratory for Cancer Research, University of Wisconsin, Madison 53706.

出版信息

Mol Gen Genet. 1990 May;221(3):411-20. doi: 10.1007/BF00259406.

Abstract

A limited number of deletion/insertions and a point mutation in the -35 region of the p'R promoter of phage lambda were examined and found to influence both transcription and its repression by the integration host factor (IHF). Positive effects on transcription (in the absence of IHF) are small (up to 1.4-fold) and are caused by a deletion-substitution upstream of the -35/ihf site. Up to three base changes in the -35 promoter element seem to be tolerated, with only a small negative effect on transcription. In some cases, effective transcription requires supercoiling of such mutant template. Since an ihf sequence overlaps the -35 region of p'R, IHF represses transcription. Repression is correlated with IHF binding and consequent DNA bending, as assessed by gel retardation experiments. Nine p'R mutants were tested for their IHF binding and repression; the results confirm the consensus sequence, 5'-W2WWWWN7WWWWCARNWN2TTR derived from the hydroxyl radical footprinting, where the bold letters indicate the IHF-protected bases and W is A or T, R is A or G and N represents A, T, G or C. Perhaps surprisingly, some mutations just upstream or downstream of this ihf sequence also affect IHF binding, as observed not only for the pR'/ihf but also for the att H' site of lambda. Supercoiling in some cases permits the IHF-mediated repression to be overcome, probably by increasing the RNA polymerase binding and/or decreasing the interaction with IHF. All our data are consistent with a model which assumes that IHF initially binds to one or two ihf contact points depending on preexisting DNA topology, bends DNA, and completes the remaining contacts while finally adjusting the DNA conformation to establish the best fit within the minor groove of the double helix. Effective IHF repression of transcription would thus depend on several factors, including: (1) the sequence, and (2) the initial conformation of the ihf site, together with (3) the capacity of IHF to compete with RNA polymerase for the overlapping binding sites.

摘要

对噬菌体λ的p'R启动子-35区域中的有限数量的缺失/插入和一个点突变进行了检测,发现它们会影响转录以及整合宿主因子(IHF)对其的抑制作用。对转录的正向影响(在不存在IHF的情况下)较小(高达1.4倍),是由-35/ihf位点上游的缺失-取代引起的。-35启动子元件中似乎可以容忍多达三个碱基的变化,对转录只有很小的负面影响。在某些情况下,有效的转录需要这种突变模板的超螺旋。由于一个ihf序列与p'R的-35区域重叠,IHF会抑制转录。通过凝胶阻滞实验评估,抑制作用与IHF结合以及随之而来的DNA弯曲相关。对九个p'R突变体进行了IHF结合和抑制测试;结果证实了源自羟基自由基足迹法的共有序列5'-W2WWWWN7WWWWCARNWN2TTR,其中加粗字母表示IHF保护的碱基,W为A或T,R为A或G,N代表A、T、G或C。也许令人惊讶的是,正如不仅在pR'/ihf而且在λ的att H'位点所观察到的那样,这个ihf序列上游或下游的一些突变也会影响IHF结合。在某些情况下,超螺旋可能通过增加RNA聚合酶结合和/或减少与IHF的相互作用来克服IHF介导的抑制作用。我们所有的数据都与一个模型一致,该模型假设IHF最初根据预先存在的DNA拓扑结构结合到一个或两个ihf接触点,弯曲DNA,并在最终调整DNA构象以在双螺旋小沟内建立最佳匹配时完成其余接触点结合。因此,IHF对转录的有效抑制将取决于几个因素包括:(1)序列;(2)ihf位点的初始构象;以及(3)IHF与RNA聚合酶竞争重叠结合位点的能力。

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