Department of Molecular Biology, Umeå University, Umeå, Sweden.
Institute of Developmental Genetics, Martin-Luther University of Halle-Wittenberg, Halle, Germany.
EMBO Rep. 2019 Apr;20(4). doi: 10.15252/embr.201846762. Epub 2019 Mar 4.
Polycomb repression is critical for metazoan development. Equally important but less studied is the Trithorax system, which safeguards Polycomb target genes from the repression in cells where they have to remain active. It was proposed that the Trithorax system acts via methylation of histone H3 at lysine 4 and lysine 36 (H3K36), thereby inhibiting histone methyltransferase activity of the Polycomb complexes. Here we test this hypothesis by asking whether the Trithorax group protein Ash1 requires H3K36 methylation to counteract Polycomb repression. We show that Ash1 is the only H3K36-specific methyltransferase necessary to prevent excessive Polycomb repression of homeotic genes. Unexpectedly, our experiments reveal no correlation between the extent of H3K36 methylation and the resistance to Polycomb repression. Furthermore, we find that complete substitution of the zygotic histone H3 with a variant in which lysine 36 is replaced by arginine does not cause excessive repression of homeotic genes. Our results suggest that the model, where the Trithorax group proteins methylate histone H3 to inhibit the histone methyltransferase activity of the Polycomb complexes, needs revision.
多梳抑制是后生动物发育的关键。同样重要但研究较少的是转录激活剂样蛋白(Trithorax)系统,该系统可以保护多梳靶基因在必须保持活性的细胞中免受抑制。有人提出,转录激活剂样蛋白系统通过组蛋白 H3 赖氨酸 4 和赖氨酸 36(H3K36)的甲基化起作用,从而抑制多梳复合物的组蛋白甲基转移酶活性。在这里,我们通过询问转录激活剂样蛋白 Ash1 是否需要 H3K36 甲基化来对抗多梳抑制来检验这一假设。我们发现 Ash1 是唯一需要的 H3K36 特异性甲基转移酶,可防止同源异型基因的过度多梳抑制。出乎意料的是,我们的实验没有显示出 H3K36 甲基化程度与对多梳抑制的抗性之间存在相关性。此外,我们发现完全用赖氨酸 36 被精氨酸取代的变体取代合子组蛋白 H3 不会导致同源异型基因的过度抑制。我们的结果表明,需要修改转录激活剂样蛋白组蛋白 H3 甲基化以抑制多梳复合物的组蛋白甲基转移酶活性的模型。