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ppGpp和pppGpp与大肠杆菌RNA聚合酶的差异结合:光标记和质谱研究。

Differential binding of ppGpp and pppGpp to E. coli RNA polymerase: photo-labeling and mass spectral studies.

作者信息

Syal Kirtimaan, Chatterji Dipankar

机构信息

Molecular Biophysics Unit, Indian Institute of Science, Bangalore, 560012, India.

出版信息

Genes Cells. 2015 Dec;20(12):1006-16. doi: 10.1111/gtc.12304. Epub 2015 Oct 8.

Abstract

(p)ppGpp, a secondary messenger, is induced under stress and shows pleiotropic response. It binds to RNA polymerase and regulates transcription in Escherichia coli. More than 25 years have passed since the first discovery was made on the direct interaction of ppGpp with E. coli RNA polymerase. Several lines of evidence suggest different modes of ppGpp binding to the enzyme. Earlier cross-linking experiments suggested that the β-subunit of RNA polymerase is the preferred site for ppGpp, whereas recent crystallographic studies pinpoint the interface of β'/ω-subunits as the site of action. With an aim to validate the binding domain and to follow whether tetra- and pentaphosphate guanosines have different location on RNA polymerase, this work was initiated. RNA polymerase was photo-labeled with 8-azido-ppGpp/8-azido-pppGpp, and the product was digested with trypsin and subjected to mass spectrometry analysis. We observed three new peptides in the trypsin digest of the RNA polymerase labeled with 8-azido-ppGpp, of which two peptides correspond to the same pocket on β'-subunit as predicted by X-ray structural analysis, whereas the third peptide was mapped on the β-subunit. In the case of 8-azido-pppGpp-labeled RNA polymerase, we have found only one cross-linked peptide from the β'-subunit. However, we were unable to identify any binding site of pppGpp on the β-subunit. Interestingly, we observed that pppGpp at high concentration competes out ppGpp bound to RNA polymerase more efficiently, whereas ppGpp cannot titrate out pppGpp. The competition between tetraphosphate guanosine and pentaphosphate guanosine for E. coli RNA polymerase was followed by gel-based assay as well as by a new method known as DRaCALA assay.

摘要

(p)ppGpp作为一种第二信使,在应激条件下被诱导产生,并表现出多效性反应。它与RNA聚合酶结合,在大肠杆菌中调节转录。自首次发现ppGpp与大肠杆菌RNA聚合酶的直接相互作用以来,已经过去了25年多。几条证据表明ppGpp与该酶的结合方式不同。早期的交联实验表明,RNA聚合酶的β亚基是ppGpp的首选结合位点,而最近的晶体学研究指出β'/ω亚基的界面是作用位点。为了验证结合结构域,并探究四磷酸鸟苷和五磷酸鸟苷在RNA聚合酶上是否有不同的定位,开展了这项工作。用8-叠氮基-ppGpp/8-叠氮基-pppGpp对RNA聚合酶进行光标记,产物用胰蛋白酶消化并进行质谱分析。我们在8-叠氮基-ppGpp标记的RNA聚合酶的胰蛋白酶消化产物中观察到三个新肽段,其中两个肽段对应于X射线结构分析预测的β'亚基上的同一个口袋,而第三个肽段定位在β亚基上。在8-叠氮基-pppGpp标记的RNA聚合酶的情况下,我们只从β'亚基中发现了一个交联肽段。然而,我们未能在β亚基上鉴定出pppGpp的任何结合位点。有趣的是,我们观察到高浓度的pppGpp能更有效地竞争取代与RNA聚合酶结合的ppGpp,而ppGpp不能取代pppGpp。通过基于凝胶的分析方法以及一种称为DRaCALA分析的新方法,研究了四磷酸鸟苷和五磷酸鸟苷对大肠杆菌RNA聚合酶的竞争情况。

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