Chung Wen-Hsiang, Craighead John L, Chang Wei-Hau, Ezeokonkwo Chukwudi, Bareket-Samish Avital, Kornberg Roger D, Asturias Francisco J
Department of Cell Biology, The Scripps Research Institute, 10550 North Torrey Pines Road, La Jolla, CA 92037, USA.
Mol Cell. 2003 Oct;12(4):1003-13. doi: 10.1016/s1097-2765(03)00387-3.
The structure of an RNA polymerase II/general transcription factor TFIIF complex was determined by cryo-electron microscopy and single particle analysis. Density due to TFIIF was not concentrated in one area but rather was widely distributed across the surface of the polymerase. The largest subunit of TFIIF interacted with the dissociable Rpb4/Rpb7 polymerase subunit complex and with the mobile "clamp." The distribution of the second largest subunit of TFIIF was very similar to that previously reported for the sigma subunit in the bacterial RNA polymerase holoenzyme, consisting of a series of globular domains extending along the polymerase active site cleft. This result indicates that the second TFIIF subunit is a true structural homolog of the bacterial sigma factor and reveals an important similarity of the transcription initiation mechanism between bacteria and eukaryotes. The structure of the RNAPII/TFIIF complex suggests a model for the organization of a minimal transcription initiation complex.
通过冷冻电子显微镜和单颗粒分析确定了RNA聚合酶II/通用转录因子TFIIF复合物的结构。TFIIF产生的密度并非集中在一个区域,而是广泛分布在聚合酶的表面。TFIIF的最大亚基与可解离的Rpb4/Rpb7聚合酶亚基复合物以及移动的“夹子”相互作用。TFIIF第二大亚基的分布与先前报道的细菌RNA聚合酶全酶中的σ亚基非常相似,由沿着聚合酶活性位点裂隙延伸的一系列球状结构域组成。这一结果表明TFIIF的第二大亚基是细菌σ因子的真正结构同源物,并揭示了细菌和真核生物转录起始机制的重要相似性。RNAPII/TFIIF复合物的结构提出了一个最小转录起始复合物组织的模型。