Goodfellow Sarah J, Zomerdijk Joost C B M
Wellcome Trust Centre for Gene Regulation and Expression, College of Life Sciences, University of Dundee, Dundee, DD1 5EH, UK.
Subcell Biochem. 2013;61:211-36. doi: 10.1007/978-94-007-4525-4_10.
RNA Polymerase (Pol) I produces ribosomal (r)RNA, an essential component of the cellular protein synthetic machinery that drives cell growth, underlying many fundamental cellular processes. Extensive research into the mechanisms governing transcription by Pol I has revealed an intricate set of control mechanisms impinging upon rRNA production. Pol I-specific transcription factors guide Pol I to the rDNA promoter and contribute to multiple rounds of transcription initiation, promoter escape, elongation and termination. In addition, many accessory factors are now known to assist at each stage of this transcription cycle, some of which allow the integration of transcriptional activity with metabolic demands. The organisation and accessibility of rDNA chromatin also impinge upon Pol I output, and complex mechanisms ensure the appropriate maintenance of the epigenetic state of the nucleolar genome and its effective transcription by Pol I. The following review presents our current understanding of the components of the Pol I transcription machinery, their functions and regulation by associated factors, and the mechanisms operating to ensure the proper transcription of rDNA chromatin. The importance of such stringent control is demonstrated by the fact that deregulated Pol I transcription is a feature of cancer and other disorders characterised by abnormal translational capacity.
RNA聚合酶(Pol)I产生核糖体(r)RNA,它是细胞蛋白质合成机制的重要组成部分,驱动细胞生长,是许多基本细胞过程的基础。对Pol I转录调控机制的广泛研究揭示了一套复杂的控制机制,这些机制影响着rRNA的产生。Pol I特异性转录因子引导Pol I至rDNA启动子,并促进多轮转录起始、启动子逃逸、延伸和终止。此外,现在已知许多辅助因子在这个转录周期的每个阶段发挥作用,其中一些因子使转录活性与代谢需求相整合。rDNA染色质的组织和可及性也影响Pol I的输出,复杂的机制确保核仁基因组表观遗传状态的适当维持及其由Pol I进行的有效转录。以下综述介绍了我们目前对Pol I转录机制的组成部分、它们的功能以及相关因子的调控,以及确保rDNA染色质正确转录的运作机制的理解。Pol I转录失调是癌症和其他以翻译能力异常为特征的疾病的一个特点,这一事实证明了这种严格控制的重要性。