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分辨率为2.6埃的细菌RNA聚合酶全酶的晶体结构。

Crystal structure of a bacterial RNA polymerase holoenzyme at 2.6 A resolution.

作者信息

Vassylyev Dmitry G, Sekine Shun-ichi, Laptenko Oleg, Lee Jookyung, Vassylyeva Marina N, Borukhov Sergei, Yokoyama Shigeyuki

机构信息

Cellular Signaling Laboratory, RIKEN Harima Institute at Spring-8, 1-1-1 Kouto, Mikazuki-cho, Sayo, Hyogo 679-5148, Japan.

出版信息

Nature. 2002 Jun 13;417(6890):712-9. doi: 10.1038/nature752. Epub 2002 May 8.

Abstract

In bacteria, the binding of a single protein, the initiation factor sigma, to a multi-subunit RNA polymerase core enzyme results in the formation of a holoenzyme, the active form of RNA polymerase essential for transcription initiation. Here we report the crystal structure of a bacterial RNA polymerase holoenzyme from Thermus thermophilus at 2.6 A resolution. In the structure, two amino-terminal domains of the sigma subunit form a V-shaped structure near the opening of the upstream DNA-binding channel of the active site cleft. The carboxy-terminal domain of sigma is near the outlet of the RNA-exit channel, about 57 A from the N-terminal domains. The extended linker domain forms a hairpin protruding into the active site cleft, then stretching through the RNA-exit channel to connect the N- and C-terminal domains. The holoenzyme structure provides insight into the structural organization of transcription intermediate complexes and into the mechanism of transcription initiation.

摘要

在细菌中,单个蛋白质起始因子σ与多亚基RNA聚合酶核心酶结合,会导致全酶的形成,全酶是转录起始所必需的RNA聚合酶的活性形式。在此,我们报告了嗜热栖热菌的细菌RNA聚合酶全酶在2.6埃分辨率下的晶体结构。在该结构中,σ亚基的两个氨基末端结构域在活性位点裂隙的上游DNA结合通道开口附近形成V形结构。σ的羧基末端结构域靠近RNA出口通道的出口,距离氨基末端结构域约57埃。延伸的连接结构域形成一个发夹结构,突出到活性位点裂隙中,然后穿过RNA出口通道伸展,以连接氨基末端和羧基末端结构域。全酶结构为转录中间复合物的结构组织以及转录起始机制提供了深入见解。

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