Rajarajacholan Uma Karthika, Thalappilly Subhash, Riabowol Karl
Department of Biochemistry and Molecular Biology, Faculty of Medicine, University of Calgary, Calgary, Alberta T2N 4N1, Canada.
Department of Oncology, Faculty of Medicine, University of Calgary, Calgary, Alberta T2N 4N1, Canada.
Nucleic Acids Res. 2017 Feb 28;45(4):1776-1792. doi: 10.1093/nar/gkw1161.
Epigenetic, transcriptional and signaling processes in the nucleolus regulate rRNA transcription and cell growth. We report here that the tumor suppressor ING1b binds rDNA, regulates rDNA chromatin modifications and affects nucleolar localization of mTOR to modulate rRNA levels. ING1 represses rDNA transcription by recruiting HDAC1 to rDNA loci, increasing its association with the NoRC complex and deacetylating the histone H3K9 and H3K27 marks of active transcription. Loss of ING1 enhances nucleolar localization of phospho-mTOR and its association with Raptor and GβL, even during rapamycin treatment. ING1 inhibits rDNA transcription by inhibiting UBF activity and its interaction with mTOR. Regulation of rDNA heterochromatin and rRNA synthesis by ING1 is also apparent during normal cell growth and during cell stress. Moreover, this function was also important during PMA induced differentiation of THP1 cells, since knocking down ING1 affected the process by inhibiting rRNA transcriptional repression. These observations show that ING1 regulates the nucleolar epigenome and rDNA transcription suggesting that regulation of protein synthesis might serve as the basis for ING1 function as a type II tumor suppressor.
核仁中的表观遗传、转录和信号传导过程调节rRNA转录和细胞生长。我们在此报告,肿瘤抑制因子ING1b与rDNA结合,调节rDNA染色质修饰,并影响mTOR的核仁定位以调节rRNA水平。ING1通过将HDAC1募集到rDNA基因座来抑制rDNA转录,增加其与NoRC复合物的结合,并使活跃转录的组蛋白H3K9和H3K27标记去乙酰化。即使在雷帕霉素处理期间,ING1的缺失也会增强磷酸化mTOR的核仁定位及其与Raptor和GβL的结合。ING1通过抑制UBF活性及其与mTOR的相互作用来抑制rDNA转录。在正常细胞生长和细胞应激期间,ING1对rDNA异染色质和rRNA合成的调节也很明显。此外,在PMA诱导的THP1细胞分化过程中,该功能也很重要,因为敲低ING1会通过抑制rRNA转录抑制来影响该过程。这些观察结果表明,ING1调节核仁表观基因组和rDNA转录,提示蛋白质合成的调节可能是ING1作为II型肿瘤抑制因子发挥功能的基础。