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Histone H2BK120 ubiquitination modulates PRC1 activity and H2AK119ub deposition on nucleosomes

Yu, Y.; Cai, D.; Zhang, Y.; Bai, G.; Wan, X.; Liu, Y.; Wang, F.; Tian, Z.; Nie, J.; Chen, J.; Xue, H.; Lei, M.; Zhang, Z.; Yang, C.; Fang, D.; Huang, J.

2026-02-20 molecular biology
10.64898/2026.02.20.706939 bioRxiv
Show abstract

Polycomb group and Trithorax group complexes antagonistically regulate developmental gene expression, yet the mechanisms coordinating their interplay remain poorly understood. Here, we uncover a synergistic histone crosstalk in which H2BK120ub (histone H2B ubiquitination at lysine 120), a Trithorax-associated active mark, enhances Polycomb repressive complex 1 (PRC1) activity by directly binding specific PCGF subunits of PRC1 on the nucleosome surface, as shown in cryo-electron microscopy (cryo-EM) analysis. Beyond regulating enzymatic activity, H2BK120ub also modulates the competitive binding between the catalytic RNF2-BMI1 module and the RYBP subunit of noncanonical PRC1.4 complexes to nucleosomes, potentially restricting H2AK119ub (histone H2A ubiquitination at lysine 119) spreading to neighboring nucleosomes. In mouse embryonic stem cells, H2BK120ub directs the deposition of H2AK119ub within the gene bodies of a subset of developmental genes, which exhibit more rapid activation compared to canonical H3K4me3/H3K27me3 bivalent genes. These findings reveal a previously unrecognized mechanism that links active and repressive histone modifications, providing new insights into the intricate chromatin regulation of gene expression during development.

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