Krohn M, Wagner R
Institut für Physikalische Biologie, Heinrich-Heine-Universität Düsseldorf, Universitätsstrasse 1, D-40225 Düsseldorf, Federal Republic of Germany.
J Biol Chem. 1996 Sep 27;271(39):23884-94. doi: 10.1074/jbc.271.39.23884.
We have studied the response of the effector molecule guanosine 3',5'-bisdiphosphate (ppGpp) on RNA polymerase pausing during in vitro transcription elongation. Pausing was followed during single round extension of stalled ternary complexes excluding possible ppGpp effects on initiation. The ppGpp dependences of early pausing sites within different transcription systems controlled by promoters with known response to enhanced ppGpp levels in vivo were quantitatively characterized. Transcription of stable RNAs and mRNA genes were analyzed. In addition, the in vitro pausing behavior of two promoter variants directing the same sequence but differing in their in vivo ppGpp sensitivity were compared. In the presence of ppGpp we noted a slight general enhancement of specific pauses in all transcription systems. However, genes known to be under stringent or growth rate control in vivo revealed a notably stronger pausing enhancement. The sites of pausing are not changed by the presence of ppGpp but appear to be sequence-specific. The effect of ppGpp on the extent of pausing depends on the particular promoter and closely adjacent sequences that the RNA polymerase has passed during initiation. Pausing enhancement requires the presence of ppGpp during elongation but not during initiation. The results underline the importance of pausing for transcription regulation and offer a plausible explanation for inhibition of stable RNA expression under conditions of elevated concentrations of ppGpp.
我们研究了效应分子鸟苷3',5'-双二磷酸(ppGpp)对体外转录延伸过程中RNA聚合酶暂停的影响。在停滞三元复合物的单轮延伸过程中监测暂停情况,排除了ppGpp对起始可能产生的影响。对体内对增强的ppGpp水平有已知反应的启动子所控制的不同转录系统中早期暂停位点的ppGpp依赖性进行了定量表征。分析了稳定RNA和mRNA基因的转录情况。此外,比较了两个指导相同序列但体内ppGpp敏感性不同的启动子变体的体外暂停行为。在有ppGpp存在的情况下,我们注意到所有转录系统中特定暂停都有轻微的普遍增强。然而,已知在体内受严格或生长速率控制的基因显示出明显更强的暂停增强。暂停位点不受ppGpp存在的影响,但似乎具有序列特异性。ppGpp对暂停程度的影响取决于特定的启动子以及RNA聚合酶在起始过程中经过的紧邻序列。暂停增强需要在延伸过程中存在ppGpp,但在起始过程中不需要。这些结果强调了暂停对转录调控的重要性,并为在ppGpp浓度升高的条件下稳定RNA表达受到抑制提供了合理的解释。