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 PMID:39105756  

Cyclin B3 is a dominant fast-acting cyclin that drives rapid early embryonic mitoses.

Pablo Lara-Gonzalez | Smriti Variyar | Shabnam Moghareh | Anh Cao Ngoc Nguyen | Amrutha Kizhedathu | Jacqueline Budrewicz | Aleesa Schlientz | Neha Varshney | Andrew Bellaart | Karen Oegema | Lee Bardwell | Arshad Desai
The Journal of cell biology | 2024

Mitosis in early embryos often proceeds at a rapid pace, but how this pace is achieved is not understood. Here, we show that cyclin B3 is the dominant driver of rapid embryonic mitoses in the C. elegans embryo. Cyclins B1 and B2 support slow mitosis (NEBD to anaphase ∼600 s), but the presence of cyclin B3 dominantly drives the approximately threefold faster mitosis observed in wildtype. Multiple mitotic events are slowed down in cyclin B1 and B2-driven mitosis, and cyclin B3-associated Cdk1 H1 kinase activity is ∼25-fold more active than cyclin B1-associated Cdk1. Addition of cyclin B1 to fast cyclin B3-only mitosis introduces an ∼60-s delay between completion of chromosome alignment and anaphase onset; this delay, which is important for segregation fidelity, is dependent on inhibitory phosphorylation of the anaphase activator Cdc20. Thus, cyclin B3 dominance, coupled to a cyclin B1-dependent delay that acts via Cdc20 phosphorylation, sets the rapid pace and ensures mitotic fidelity in the early C. elegans embryo.

Pubmed ID: 39105756

Antibodies used in this publication

None found

Associated grants

  • Agency: Ludwig Institute for Cancer Research,
  • Agency: ODCDC CDC HHS, United States
    Id: P40 OD010440
  • Agency: NIGMS NIH HHS, United States
    Id: R35 GM150786
  • Agency: NIH HHS, United States
    Id: P40 OD010440
  • Agency: NIH HHS, United States
    Id: S10 OD021724
  • Agency: NIGMS NIH HHS, United States
    Id: F32 GM145068
  • Agency: NIGMS NIH HHS, United States
    Id: R01 GM074215
  • Agency: NIGMS NIH HHS, United States
    Id: R01 GM147265

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PRISM (tool)

RRID:SCR_005375

THIS RESOURCE IS NO LONGER IN SERVICE. Documented on May 5,2022.Tool that predicts interactions between transcription factors and their regulated genes from binding motifs. Understanding vertebrate development requires unraveling the cis-regulatory architecture of gene regulation. PRISM provides accurate genome-wide computational predictions of transcription factor binding sites for the human and mouse genomes, and integrates the predictions with GREAT to provide functional biological context. Together, accurate computational binding site prediction and GREAT produce for each transcription factor: 1. putative binding sites, 2. putative target genes, 3. putative biological roles of the transcription factor, and 4. putative cis-regulatory elements through which the factor regulates each target in each functional role.

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RRID:SCR_009018

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Caenorhabditis Genetics Center (biomaterial supply resource)

RRID:SCR_007341

Center that acquires, maintains, and distributes genetic stocks and information about stocks of the small free-living nematode Caenorhabditis elegans for use by investigators initiating or continuing research on this genetic model organism. A searchable strain database, general information about C. elegans, and links to key Web sites of use to scientists, including WormBase, WormAtlas, and WormBook are available.

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