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Set mediates chromosome alignment and Cohesin cleavage independently of direct PP2A-B56-binding in oocyte meiosis

Keating, L.; Esposito Verza, A.; El Yakoubi, W.; Gryaznova, Y.; El Jailani, S.; Cladiere, D.; Touati, S. A.; Buffin, E.; RACHEZ, C.; Sarli, V.; Pendas, A. M.; Gu, W.; Musacchio, A.; Wassmann, K.

2026-08-21 cell biology
10.64898/2026.08.20.745968 bioRxiv
Show abstract

Set promotes cohesion removal in mitosis by evicting phosphorylated Histone H1 and counteracting Sgo1. In addition, Set promotes chromosome alignment by counteracting Aurora B activation. The underlying molecular mechanisms through which Set performs these activities remain insufficiently characterized, but roles of Set as a Histone chaperone and PP2A inhibitor have been proposed. Building on our previous observations that Set promotes pericentromeric Cohesin removal in oocyte meiosis II, we generated an oocyte-specific conditional knock-out of Set to address its functions in meiosis. Similar to mitosis, Set depletion caused chromosome alignment and cohesion defects. We found that Set is required for accurate error correction by localizing Aurora B/C, and for efficient cleavage of the meiosis-specific Cohesin subunit Rec8 by Separase. Paired chromosomes and sister chromatids were often incompletely separated, likely a primary cause of missegregation. Set performed both its roles in a Sgo2-dependent manner, but, unexpectedly, independently of interaction with PP2A-B56. In line with a role of Set as a Histone chaperone, accumulation of phosphorylated Histone H1 in Set knock-out oocytes occurs concomitantly with reduction of oocyte-specific H1foo on chromosome arms, indicating that Set is required to create the optimal chromatin environment for efficient Rec8 cleavage by Separase in meiosis.

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