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Targeting Menin disrupts the KMT2A/B and polycomb balance to paradoxically activate bivalent genes.

Authors :
Sparbier CE
Gillespie A
Gomez J
Kumari N
Motazedian A
Chan KL
Bell CC
Gilan O
Chan YC
Popp S
Gough DJ
Eckersley-Maslin MA
Dawson SJ
Lehner PJ
Sutherland KD
Ernst P
McGeehan GM
Lam EYN
Burr ML
Dawson MA
Source :
Nature cell biology [Nat Cell Biol] 2023 Feb; Vol. 25 (2), pp. 258-272. Date of Electronic Publication: 2023 Jan 12.
Publication Year :
2023

Abstract

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.<br /> (© 2023. The Author(s), under exclusive licence to Springer Nature Limited.)

Details

Language :
English
ISSN :
1476-4679
Volume :
25
Issue :
2
Database :
MEDLINE
Journal :
Nature cell biology
Publication Type :
Academic Journal
Accession number :
36635503
Full Text :
https://doi.org/10.1038/s41556-022-01056-x