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Accessory subunits of PRC2 mimic H3K27me3 to restrict the spread of Polycomb domains

Agius, S. C.; Boudes, M.; Healy, E.; Chang, Y.-C.; Murray, M.; Manent, J.; Rientjes, J.; Lai, Z.; Nixon, S.; Levina, V.; McGlinn, E.; Davidovich, C.

2025-03-13 molecular biology
10.1101/2025.03.13.642955 bioRxiv
Show abstract

The Polycomb repressive complex 2 (PRC2) is essential for normal development by maintaining developmental gene repression. PRC2 deposits the repressive chromatin mark H3 lysine 27 tri-methyl (H3K27me3) through a read-write loop that involves direct interactions between PRC2 and H3K27me3. According to current models, the PRC2-H3K27me3 read-write loop is initiated by the PRC2 subunits JARID2 and PALI1 that mimic H3K27me3. However, it is unknown what restricts the PRC2-H3K27me3 read-write loop from spreading H3K27me3 indefinitely. To answer this question, we generated mutant mice where PRC2 subunits cannot mimic H3K27me3. Unexpectedly, the mutations led to delayed Hox genes activation and a homeotic transformation characteristic of a Polycomb gain-of-function in vivo and the spread of H3K27me3 beyond Polycomb domains in stem cells. Collectively, we show that H3K27me3 mimicry evolved to compete against the PRC2-H3K27me3 read-write loop in a process that restrains PRC2 and restricts the spread of Polycomb domains. HighlightsO_LIH3K27me3 mimicry antagonises Polycomb function in vivo. C_LIO_LIJARID2 and PALI1 synergise to allosterically regulate PRC2 during development. C_LIO_LIH3K27me3 mimicry by JARID2 and PALI1 antagonises PRC2 in stem cells. C_LIO_LIJARID2 and PALI1 mimic H3K27me3 to restrict the spread of Polycomb domains. C_LI

Published in Molecular Cell (predicted rank #2) · training set

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