Mikulski Pawel, Komarynets Olga, Fachinelli Fabio, Weber Andreas P M, Schubert Daniel
Institute of Biology, Free University of BerlinBerlin, Germany.
Institute of Genetics, Heinrich-Heine-Universität DüsseldorfDüsseldorf, Germany.
Front Plant Sci. 2017 Apr 26;8:607. doi: 10.3389/fpls.2017.00607. eCollection 2017.
Polycomb Group (PcG) proteins mediate chromatin repression in plants and animals by catalyzing H3K27 methylation and H2AK118/119 mono-ubiquitination through the activity of the Polycomb repressive complex 2 (PRC2) and PRC1, respectively. PcG proteins were extensively studied in higher plants, but their function and target genes in unicellular branches of the green lineage remain largely unknown. To shed light on PcG function and in a broad evolutionary context, we demonstrate phylogenetic relationship of core PRC1 and PRC2 proteins and H3K27me3 biochemical presence in several unicellular algae of different phylogenetic subclades. We focus then on one of the species, the model red alga , and show that H3K27me3 occupies both, genes and repetitive elements, and mediates the strength of repression depending on the differential occupancy over gene bodies. Furthermore, we report that H3K27me3 in is enriched in telomeric and subtelomeric regions of the chromosomes and has unique preferential binding toward intein-containing genes involved in protein splicing. Thus, our study gives important insight for Polycomb-mediated repression in lower eukaryotes, uncovering a previously unknown link between H3K27me3 targets and protein splicing.
多梳蛋白组(PcG)通过分别通过多梳抑制复合体2(PRC2)和PRC1的活性催化H3K27甲基化和H2AK118/119单泛素化,在植物和动物中介导染色质抑制。PcG蛋白在高等植物中得到了广泛研究,但其在绿色谱系单细胞分支中的功能和靶基因仍 largely未知。为了在广泛的进化背景下阐明PcG的功能,我们展示了核心PRC1和PRC2蛋白的系统发育关系以及H3K27me3在几个不同系统发育亚分支的单细胞藻类中的生化存在。然后我们聚焦于其中一个物种,模式红藻,并表明H3K27me3占据基因和重复元件两者,并根据在基因体上的差异占据来介导抑制强度。此外,我们报告说, 中的H3K27me3在染色体的端粒和亚端粒区域富集,并且对参与蛋白质剪接的含内含肽基因具有独特的优先结合。因此,我们的研究为低等真核生物中多梳介导的抑制提供了重要见解,揭示了H3K27me3靶标与蛋白质剪接之间以前未知的联系。