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PWO proteins are associated with PRC2 since their emergence in vascular plants

Khan, A.; Haider, S.; Sharaf, A.; Kusova, A.; Skalak, J.; Jourdain, C.; Rennie, M.; Schrumpfova, P. P.; Hejatko, J.; Schubert, D.; Farrona, S.; Mozgova, I.

2025-03-17 plant biology
10.1101/2025.03.15.643013 bioRxiv
Show abstract

PWWP-Domain Interactor of Polycombs 1 (PWO1), also known as PWWP1, interacts with the catalytic subunits of the Polycomb Repressive Complex 2 (PRC2) and, together with PWO2/3 proteins, plays a critical role in the development of Arabidopsis thaliana (At). PWOs are unique to plants and impact chromatin structure by enabling crosstalk between active and repressive epigenetic marks through mechanisms that are not yet fully understood. We aimed to understand the evolution of PWO proteins and whether their interaction with PRC2 has been conserved through evolution. Our study reveals that PWO proteins are present in vascular plants, but absent in bryophytes and green algae. The ancestral clade of PWO proteins includes the Selaginella moellendorffii (Sm) PWO orthologs SmPWOa and SmPWOb. Transient expression assays showed that both AtPWO1 and SmPWOa form nuclear speckles where they tether At, Sm, but also Physcomitrium patens (Pp) PRC2 catalytic subunits, despite the absence of PWO proteins in Pp. The PWO-PRC2 interactions were confirmed by protein-protein analyses. A newly identified evolutionarily conserved short C-terminal alpha-helix (c-motif) in PWO proteins contributes to an interaction interface for PWO-PRC2 binding. SmPWOs partially rescue the pwo1;pwo2 mutant phenotype in Arabidopsis, highlighting the functional conservation of PWOs in vascular plants.

Published in New Phytologist (predicted rank #3) · training set

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