Wellcome Trust Centre for Cell Biology, Institute of Cell Biology, The University of Edinburgh, Edinburgh, UK.
EMBO J. 2010 Feb 17;29(4):717-26. doi: 10.1038/emboj.2009.401. Epub 2010 Jan 21.
Higher-order multi-protein complexes such as RNA polymerase II (Pol II) complexes with transcription initiation factors are often not amenable to X-ray structure determination. Here, we show that protein cross-linking coupled to mass spectrometry (MS) has now sufficiently advanced as a tool to extend the Pol II structure to a 15-subunit, 670 kDa complex of Pol II with the initiation factor TFIIF at peptide resolution. The N-terminal regions of TFIIF subunits Tfg1 and Tfg2 form a dimerization domain that binds the Pol II lobe on the Rpb2 side of the active centre cleft near downstream DNA. The C-terminal winged helix (WH) domains of Tfg1 and Tfg2 are mobile, but the Tfg2 WH domain can reside at the Pol II protrusion near the predicted path of upstream DNA in the initiation complex. The linkers between the dimerization domain and the WH domains in Tfg1 and Tfg2 are located to the jaws and protrusion, respectively. The results suggest how TFIIF suppresses non-specific DNA binding and how it helps to recruit promoter DNA and to set the transcription start site. This work establishes cross-linking/MS as an integrated structure analysis tool for large multi-protein complexes.
更高阶的多蛋白复合物,如与转录起始因子结合的 RNA 聚合酶 II(Pol II)复合物,通常不适合 X 射线结构测定。在这里,我们表明,蛋白质交联结合质谱(MS)已经足够先进,可以将 Pol II 结构扩展到 15 个亚基、670 kDa 的 Pol II 与起始因子 TFIIF 的复合物,达到肽分辨率。TFIIF 亚基 Tfg1 和 Tfg2 的 N 端区域形成二聚化结构域,该结构域与活性中心裂隙中 Pol II 叶突上的 Rpb2 侧结合,靠近下游 DNA。Tfg1 和 Tfg2 的 C 端翼状螺旋(WH)结构域是可移动的,但 Tfg2 WH 结构域可以位于启动复合物中上游 DNA 预测路径附近的 Pol II 突出部位。Tfg1 和 Tfg2 中的二聚化结构域和 WH 结构域之间的连接体分别位于颚部和突出部。这些结果表明了 TFIIF 如何抑制非特异性 DNA 结合,以及它如何帮助募集启动子 DNA 并设置转录起始位点。这项工作确立了交联/MS 作为一种用于大型多蛋白复合物的综合结构分析工具。