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March 21, 2026Developmental Cell0 citationsOpen Access

Multi-omic analyses reveal a differential contribution of chromatin-associated PP1 holoenzymes to mitotic exit and G1 re-establishment

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KSKonstantinos StamatiouBrunel University of LondonFHF. HuguetBrunel University of LondonMBMarta Izabela BudzinskaBrunel University of London

Key Points

  • This research aims to clarify how different chromatin-associated PP1-targeting subunits influence mitotic exit and the transition to G1 phase.
  • Utilized endogenously tagged, auxin-degradable alleles of PP1-targeting subunits in human cell line HCT116.
  • Employed a multi-omic approach to analyze transcription, chromatin accessibility, and dephosphorylation.
  • Focused on three subunits: Repo-Man, Ki-67, and PNUTS.
  • Identified distinct roles for Repo-Man and Ki-67 in promoting genome stability during mitotic exit.
  • Demonstrated that PP1-targeting subunits contribute variably to transcription resumption and chromatin accessibility.
  • Provided new datasets for the cell-cycle research community.

Abstract

Mitotic exit is an important part of the cell cycle, requiring the coordination of many chromatin and cytoskeleton remodeling events to successfully complete cell division and maintain cell identity. Protein dephosphorylation is a key step in directing mitotic exit, and protein phosphatase 1 (PP1) is essential to this process; however, the specific contribution of its numerous targeting subunits is still unknown. Here, we have investigated the function of three chromatin-associated PP1-targeting subunits in mitosis exit: Repo-Man, Ki-67, and protein phosphatase 1 nuclear targeting subunit (PNUTS). We generated endogenously tagged, auxin-degradable alleles for each subunit in the human cell line HCT116 and used a multi-omic approach to address their specific contributions toward transcription resumption, chromatin accessibility, and protein dephosphorylation at the transition from mitosis to G1. This approach identified their distinct role in mitotic exit, provided datasets for the cell-cycle community, and highlighted functions for Ki-67 and Repo-Man in genome stability and organization.

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Cite This Study

Stamatiou et al. (2026) studied this question.

synapsesocial.com/papers/69be35166e48c4981c6732d3https://doi.org/10.1016/j.devcel.2026.02.016
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