Hoffmann Niklas A, Sadian Yashar, Tafur Lucas, Kosinski Jan, Müller Christoph W
a European Molecular Biology Laboratory (EMBL) , Structural and Computational Biology Unit , Heidelberg , Germany.
Transcription. 2016 Aug 7;7(4):127-32. doi: 10.1080/21541264.2016.1203628. Epub 2016 Jun 21.
Here, we discuss the overall architecture of the RNA polymerase I (Pol I) and III (Pol III) core enzymes and their associated general transcription factors in the context of models of the Pol I and Pol III pre-initiation complexes, thereby highlighting potential functional adaptations of the Pol I and Pol III enzymes to their respective transcription tasks. Several new insights demonstrate the great degree of specialization of each of the eukaryotic RNA polymerases that is only beginning to be revealed as the structural and functional characterization of all eukaryotic RNA polymerases and their pre-initiation complexes progresses.
在此,我们在RNA聚合酶I(Pol I)和III(Pol III)预起始复合物模型的背景下,讨论RNA聚合酶I(Pol I)和III(Pol III)核心酶及其相关通用转录因子的整体结构,从而突出Pol I和Pol III酶对其各自转录任务的潜在功能适应性。一些新的见解表明,随着所有真核RNA聚合酶及其预起始复合物的结构和功能特征研究不断深入,真核生物的每种RNA聚合酶都具有高度的特异性,而这一点才刚刚开始显现出来。