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真核生物RNA聚合酶的结构。

Structure of eukaryotic RNA polymerases.

作者信息

Cramer P, Armache K-J, Baumli S, Benkert S, Brueckner F, Buchen C, Damsma G E, Dengl S, Geiger S R, Jasiak A J, Jawhari A, Jennebach S, Kamenski T, Kettenberger H, Kuhn C-D, Lehmann E, Leike K, Sydow J F, Vannini A

机构信息

Gene Center Munich and Center for Integrated Protein Science CIPSM, Department of Chemistry and Biochemistry, Ludwig-Maximilians-Universität München, 81377 Munich, Germany.

出版信息

Annu Rev Biophys. 2008;37:337-52. doi: 10.1146/annurev.biophys.37.032807.130008.

Abstract

The eukaryotic RNA polymerases Pol I, Pol II, and Pol III are the central multiprotein machines that synthesize ribosomal, messenger, and transfer RNA, respectively. Here we provide a catalog of available structural information for these three enzymes. Most structural data have been accumulated for Pol II and its functional complexes. These studies have provided insights into many aspects of the transcription mechanism, including initiation at promoter DNA, elongation of the mRNA chain, tunability of the polymerase active site, which supports RNA synthesis and cleavage, and the response of Pol II to DNA lesions. Detailed structural studies of Pol I and Pol III were reported recently and showed that the active center region and core enzymes are similar to Pol II and that strong structural differences on the surfaces account for gene class-specific functions.

摘要

真核生物的RNA聚合酶Pol I、Pol II和Pol III是分别合成核糖体RNA、信使RNA和转运RNA的核心多蛋白机器。在此,我们提供了这三种酶的现有结构信息目录。关于Pol II及其功能复合物的结构数据积累最多。这些研究为转录机制的许多方面提供了见解,包括启动子DNA处的起始、mRNA链的延伸、支持RNA合成和切割的聚合酶活性位点的可调性,以及Pol II对DNA损伤的反应。最近报道了对Pol I和Pol III的详细结构研究,结果表明其活性中心区域和核心酶与Pol II相似,而表面上的强烈结构差异则决定了基因类别特异性功能。

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