Department of Biological Sciences, Columbia University, New York, New York 10027, USA.
Department of Molecular Medicine and Neurobiology, The Scripps Research Institute, La Jolla, California 92037, USA.
Genes Dev. 2019 Jan 1;33(1-2):116-126. doi: 10.1101/gad.318030.118. Epub 2018 Dec 20.
Heterochromatin is a highly condensed form of chromatin that silences gene transcription. Although high levels of transcriptional activities disrupt heterochromatin, transcription of repetitive DNA elements and subsequent processing of the transcripts by the RNAi machinery are required for heterochromatin assembly. In fission yeast, a JmjC domain protein, Epe1, promotes transcription of DNA repeats to facilitate heterochromatin formation, but overexpression of Epe1 leads to heterochromatin defects. However, the molecular function of Epe1 is not well understood. By screening the fission yeast deletion library, we found that heterochromatin defects associated with Epe1 overexpression are alleviated by mutations of the SAGA histone acetyltransferase complex. Overexpressed Epe1 associates with SAGA and recruits SAGA to heterochromatin regions, which leads to increased histone acetylation, transcription of repeats, and the disruption of heterochromatin. At its normal expression levels, Epe1 also associates with SAGA, albeit weakly. Such interaction regulates histone acetylation levels at heterochromatin and promotes transcription of repeats for heterochromatin assembly. Our results also suggest that increases of certain chromatin protein levels, which frequently occur in cancer cells, might strengthen relatively weak interactions to affect the epigenetic landscape.
异染色质是一种高度浓缩的染色质形式,它能使基因转录沉默。尽管高水平的转录活性会破坏异染色质,但重复 DNA 元件的转录和随后由 RNAi 机制对转录本的加工对于异染色质的组装是必需的。在裂殖酵母中,一种 JmjC 结构域蛋白 Epe1 促进 DNA 重复序列的转录,从而促进异染色质的形成,但 Epe1 的过表达会导致异染色质缺陷。然而,Epe1 的分子功能尚不清楚。通过筛选裂殖酵母缺失文库,我们发现 Epe1 过表达相关的异染色质缺陷可以通过 SAGA 组蛋白乙酰转移酶复合物的突变得到缓解。过表达的 Epe1 与 SAGA 相关联,并招募 SAGA 到异染色质区域,导致组蛋白乙酰化增加、重复转录和异染色质的破坏。在其正常表达水平下,Epe1 也与 SAGA 相关联,尽管较弱。这种相互作用调节异染色质上的组蛋白乙酰化水平,并促进重复转录以组装异染色质。我们的研究结果还表明,在癌细胞中经常发生的某些染色质蛋白水平的增加可能会增强相对较弱的相互作用,从而影响表观遗传景观。