Reduction of cortical pulling at mitotic entry facilitates aster centration

Equal cell division relies upon astral microtubule-based centering mechanisms, yet how the interplay between mitotic entry, cortical force generation and long astral microtubules leads to symmetric cell division is not resolved. We report that a cortically located sperm aster displaying long astral...

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Veröffentlicht in:Journal of cell science 2024-04, Vol.137 (7)
Hauptverfasser: Rosfelter, Anne, de Labbey, Ghislain, Chenevert, Janet, Dumollard, Rémi, Schaub, Sebastien, Machaty, Zoltan, Besnardeau, Lydia, Gonzalez Suarez, Daniel, Hebras, Céline, Turlier, Hervé, Burgess, David R, McDougall, Alex
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Sprache:eng
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Zusammenfassung:Equal cell division relies upon astral microtubule-based centering mechanisms, yet how the interplay between mitotic entry, cortical force generation and long astral microtubules leads to symmetric cell division is not resolved. We report that a cortically located sperm aster displaying long astral microtubules that penetrate the whole zygote does not undergo centration until mitotic entry. At mitotic entry, we find that microtubule-based cortical pulling is lost. Quantitative measurements of cortical pulling and cytoplasmic pulling together with physical simulations suggested that a wavelike loss of cortical pulling at mitotic entry leads to aster centration based on cytoplasmic pulling. Cortical actin is lost from the cortex at mitotic entry coincident with a fall in cortical tension from ∼300pN/µm to ∼100pN/µm. Following the loss of cortical force generators at mitotic entry, long microtubule-based cytoplasmic pulling is sufficient to displace the aster towards the cell center. These data reveal how mitotic aster centration is coordinated with mitotic entry in chordate zygotes.
ISSN:0021-9533
1477-9137
DOI:10.1242/jcs.262037