Cancer Research Division, Peter MacCallum Cancer Centre, Melbourne, Victoria, Australia.
Sir Peter MacCallum Department of Oncology, University of Melbourne, Melbourne, Victoria, Australia.
Nat Cell Biol. 2023 Feb;25(2):258-272. doi: 10.1038/s41556-022-01056-x. Epub 2023 Jan 12.
Precise control of activating H3K4me3 and repressive H3K27me3 histone modifications at bivalent promoters is essential for normal development and frequently corrupted in cancer. By coupling a cell surface readout of bivalent MHC class I gene expression with whole-genome CRISPR-Cas9 screens, we identify specific roles for MTF2-PRC2.1, PCGF1-PRC1.1 and Menin-KMT2A/B complexes in maintaining bivalency. Genetic loss or pharmacological inhibition of Menin unexpectedly phenocopies the effects of polycomb disruption, resulting in derepression of bivalent genes in both cancer cells and pluripotent stem cells. While Menin and KMT2A/B contribute to H3K4me3 at active genes, a separate Menin-independent function of KMT2A/B maintains H3K4me3 and opposes polycomb-mediated repression at bivalent genes. Release of KMT2A from active genes following Menin targeting alters the balance of polycomb and KMT2A at bivalent genes, facilitating gene activation. This functional partitioning of Menin-KMT2A/B complex components reveals therapeutic opportunities that can be leveraged through inhibition of Menin.
精确控制双价启动子上激活的 H3K4me3 和抑制的 H3K27me3 组蛋白修饰对于正常发育至关重要,但在癌症中经常受到破坏。通过将双价 MHC I 类基因表达的细胞表面读出与全基因组 CRISPR-Cas9 筛选相结合,我们确定了 MTF2-PRC2.1、PCGF1-PRC1.1 和 Menin-KMT2A/B 复合物在维持双价性方面的特定作用。Menin 的遗传缺失或药理学抑制出人意料地模拟了多梳体破坏的效应,导致癌细胞和多能干细胞中双价基因的去抑制。虽然 Menin 和 KMT2A/B 有助于活性基因的 H3K4me3,但 KMT2A/B 的一个独立于 Menin 的功能维持双价基因的 H3K4me3 并拮抗多梳体介导的抑制。Menin 靶向后从活性基因中释放的 KMT2A 改变了多梳体和 KMT2A 在双价基因上的平衡,促进了基因激活。这种 Menin-KMT2A/B 复合物成分的功能划分揭示了可以通过抑制 Menin 利用的治疗机会。