Cancer Center, Massachusetts General Hospital, Boston, MA 02114, USA.
Cell Stem Cell. 2012 Sep 7;11(3):319-32. doi: 10.1016/j.stem.2012.06.002. Epub 2012 Jul 5.
L3mbtl2 has been implicated in transcriptional repression and chromatin compaction but its biological function has not been defined. Here we show that disruption of L3mbtl2 results in embryonic lethality with failure of gastrulation. This correlates with compromised proliferation and abnormal differentiation of L3mbtl2(-/-) embryonic stem (ES) cells. L3mbtl2 regulates genes by recruiting a Polycomb Repressive Complex1 (PRC1)-related complex, resembling the previously described E2F6-complex, and including G9A, Hdac1, and Ring1b. The presence of L3mbtl2 at target genes is associated with H3K9 dimethylation, low histone acetylation, and H2AK119 ubiquitination, but the latter is neither dependent on L3mbtl2 nor sufficient for repression. Genome-wide studies revealed that the L3mbtl2-dependent complex predominantly regulates genes not bound by canonical PRC1 and PRC2. However, some developmental regulators are repressed by the combined activity of all three complexes. Together, we have uncovered a highly selective, essential role for an atypical PRC1-family complex in ES cells and early development.
L3mbtl2 参与转录抑制和染色质紧缩,但它的生物学功能尚未确定。在这里,我们显示 L3mbtl2 的破坏导致胚胎致死,原肠胚形成失败。这与 L3mbtl2(-/-)胚胎干细胞 (ES 细胞) 的增殖受损和异常分化有关。L3mbtl2 通过招募 Polycomb Repressive Complex1 (PRC1) 相关复合物来调节基因,类似于先前描述的 E2F6 复合物,包括 G9A、Hdac1 和 Ring1b。L3mbtl2 在靶基因上的存在与 H3K9 二甲基化、低组蛋白乙酰化和 H2AK119 泛素化有关,但后者既不依赖于 L3mbtl2,也不足以抑制基因表达。全基因组研究表明,L3mbtl2 依赖性复合物主要调节不被经典 PRC1 和 PRC2 结合的基因。然而,一些发育调节剂被所有三个复合物的联合活性所抑制。总之,我们发现了一个非典型的 PRC1 家族复合物在 ES 细胞和早期发育中具有高度选择性和必需的作用。