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Mass spectrometry of Escherichia coli RNA polymerase: interactions of the core enzyme with sigma70 and Rsd protein

机译:大肠杆菌RNa聚合酶的质谱:核心酶与sigma70和Rsd蛋白的相互作用

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摘要

The E. coli RNA polymerase core enzyme is a multisubunit complex of 388,981 Da. To initiate transcription at promoters, the core enzyme associates with a sigma subunit to form holo RNA polymerase. Here we have used nanoflow electrospray mass spectrometry, coupled with tandem mass spectrometry, to probe the interaction of the RNA polymerase core enzyme with the most abundant sigma factor, sigma70. The results show remarkably well-resolved spectra for both the core and holo RNA polymerases. The regulator of sigma70, Rsd protein, has previously been identified as a protein that binds to free sigma70. We show that Rsd also interacts with core enzyme. In addition, by adding increasing amounts of Rsd, we show that sigma70 is displaced from holo RNA polymerase, resulting in complexes of Rsd with core and sigma70. The results argue for a model in which Rsd not only sequesters sigma70, but is also an effector of core RNA polymerase.
机译:大肠杆菌RNA聚合酶核心酶是388,981 Da的多亚基复合物。为了在启动子处启动转录,核心酶与一个sigma亚基缔合形成完整的RNA聚合酶。在这里,我们使用了纳流电喷雾质谱和串联质谱,来探测RNA聚合酶核心酶与最丰富的sigma因子sigma70的相互作用。结果显示核心和完整RNA聚合酶的光谱均得到很好的分辨。 sigma70的调节剂Rsd蛋白先前已被鉴定为与游离sigma70结合的蛋白。我们表明Rsd也与核心酶相互作用。此外,通过增加Rsd的量,我们显示出sigma70从完整的RNA聚合酶中置换出来,导致Rsd与核心和sigma70形成复合体。结果证明了一个模型,其中Rsd不仅隔离sigma70,而且还是核心RNA聚合酶的效应子。

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