RNA聚合酶I转录机制。

Jackie Russell, Joost C B M Zomerdijk
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引用次数: 161

摘要

rna构成核糖体的催化和结构成分,核糖体是细胞的蛋白质合成机器。因此,由RNA聚合酶I介导的rRNA合成水平对细胞的生命和命运具有重要影响。为了阐明细胞如何实现对Pol I转录的严格控制,在不同的细胞生长条件下匹配rRNA的供应和需求,有必要了解Pol I转录机制的组成和机制。本文综述了Pol i酶复合物的分子组成和功能,以及两个主要的Pol i转录因子SL1(选择性因子1)和UBF(上游结合因子);(ii)在哺乳动物细胞中rDNA启动子的起始前复合物形成过程中这些因子之间的相互作用;(iii)细胞对Pol I转录机制的控制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The RNA polymerase I transcription machinery.

The rRNAs constitute the catalytic and structural components of the ribosome, the protein synthesis machinery of cells. The level of rRNA synthesis, mediated by Pol I (RNA polymerase I), therefore has a major impact on the life and destiny of a cell. In order to elucidate how cells achieve the stringent control of Pol I transcription, matching the supply of rRNA to demand under different cellular growth conditions, it is essential to understand the components and mechanics of the Pol I transcription machinery. In this review, we discuss: (i) the molecular composition and functions of the Pol I enzyme complex and the two main Pol I transcription factors, SL1 (selectivity factor 1) and UBF (upstream binding factor); (ii) the interplay between these factors during pre-initiation complex formation at the rDNA promoter in mammalian cells; and (iii) the cellular control of the Pol I transcription machinery.

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