Lee Hun-Goo, Kahn Tatyana G, Simcox Amanda, Schwartz Yuri B, Pirrotta Vincenzo
Molecular Biology & Biochemistry, Rutgers University, Piscataway, New Jersey 08854, USA;
Molecular Biology & Biochemistry, Rutgers University, Piscataway, New Jersey 08854, USA; Molecular Biology, Umeå University, NUS, 901 87 Umeå, Sweden;
Genome Res. 2015 Aug;25(8):1170-81. doi: 10.1101/gr.188920.114. Epub 2015 May 18.
Polycomb group (PcG) complexes PRC1 and PRC2 are well known for silencing specific developmental genes. PRC2 is a methyltransferase targeting histone H3K27 and producing H3K27me3, essential for stable silencing. Less well known but quantitatively much more important is the genome-wide role of PRC2 that dimethylates ∼70% of total H3K27. We show that H3K27me2 occurs in inverse proportion to transcriptional activity in most non-PcG target genes and intergenic regions and is governed by opposing roaming activities of PRC2 and complexes containing the H3K27 demethylase UTX. Surprisingly, loss of H3K27me2 results in global transcriptional derepression proportionally greatest in silent or weakly transcribed intergenic and genic regions and accompanied by an increase of H3K27ac and H3K4me1. H3K27me2 therefore sets a threshold that prevents random, unscheduled transcription all over the genome and even limits the activity of highly transcribed genes. PRC1-type complexes also have global roles. Unexpectedly, we find a pervasive distribution of histone H2A ubiquitylated at lysine 118 (H2AK118ub) outside of canonical PcG target regions, dependent on the RING/Sce subunit of PRC1-type complexes. We show, however, that H2AK118ub does not mediate the global PRC2 activity or the global repression and is predominantly produced by a new complex involving L(3)73Ah, a homolog of mammalian PCGF3.
多梳蛋白家族(PcG)复合物PRC1和PRC2因沉默特定发育基因而闻名。PRC2是一种甲基转移酶,靶向组蛋白H3K27并产生H3K27me3,这对稳定沉默至关重要。PRC2在全基因组范围内的作用鲜为人知,但在数量上更为重要,它能使约70%的总H3K27发生二甲基化。我们发现,在大多数非PcG靶基因和基因间区域,H3K27me2的出现与转录活性成反比,并且受PRC2和含有H3K27去甲基化酶UTX的复合物的相反漫游活性调控。令人惊讶的是,H3K27me2的缺失导致全基因组转录去抑制,在沉默或低转录的基因间和基因区域中比例最大,同时伴随着H3K27ac和H3K4me1的增加。因此,H3K27me2设定了一个阈值,可防止全基因组随机、无计划的转录,甚至限制高转录基因的活性。PRC1型复合物也具有全基因组作用。出乎意料的是,我们发现在经典PcG靶区域之外,赖氨酸118泛素化的组蛋白H2A(H2AK118ub)普遍存在,这依赖于PRC1型复合物的RING/Sce亚基。然而,我们发现H2AK118ub并不介导PRC2的全基因组活性或全基因组抑制,并且主要由一种涉及L(3)73Ah(哺乳动物PCGF3的同源物)组成新复合物产生。