» Articles » PMID: 34491981

RhoA- and Cdc42-induced Antagonistic Forces Underlie Symmetry Breaking and Spindle Rotation in Mouse Oocytes

Overview
Journal PLoS Biol
Specialty Biology
Date 2021 Sep 7
PMID 34491981
Citations 9
Authors
Affiliations
Soon will be listed here.
Abstract

Mammalian oocyte meiotic divisions are highly asymmetric and produce a large haploid gamete and 2 small polar bodies. This relies on the ability of the cell to break symmetry and position its spindle close to the cortex before anaphase occurs. In metaphase II-arrested mouse oocytes, the spindle is actively maintained close and parallel to the cortex, until fertilization triggers sister chromatid segregation and the rotation of the spindle. The latter must indeed reorient perpendicular to the cortex to enable cytokinesis ring closure at the base of the polar body. However, the mechanisms underlying symmetry breaking and spindle rotation have remained elusive. In this study, we show that spindle rotation results from 2 antagonistic forces. First, an inward contraction of the cytokinesis furrow dependent on RhoA signaling, and second, an outward attraction exerted on both sets of chromatids by a Ran/Cdc42-dependent polarization of the actomyosin cortex. By combining live segmentation and tracking with numerical modeling, we demonstrate that this configuration becomes unstable as the ingression progresses. This leads to spontaneous symmetry breaking, which implies that neither the rotation direction nor the set of chromatids that eventually gets discarded are biologically predetermined.

Citing Articles

An egg-sabotaging mechanism drives non-Mendelian transmission in mice.

Clark F, Greenberg N, Silva D, Trimm E, Skinner M, Walton R Curr Biol. 2024; 34(17):3845-3854.e4.

PMID: 39067449 PMC: 11387149. DOI: 10.1016/j.cub.2024.07.001.


Sirtuin 5-driven meiotic spindle assembly and actin-based migration in mouse oocyte meiosis.

Ma C, Zhang X, Zhang Y, Ruan H, Xu X, Wu C Heliyon. 2024; 10(11):e32466.

PMID: 38933958 PMC: 11201115. DOI: 10.1016/j.heliyon.2024.e32466.


An egg sabotaging mechanism drives non-Mendelian transmission in mice.

Clark F, Greenberg N, Silva D, Trimm E, Skinner M, Walton R bioRxiv. 2024; .

PMID: 38903120 PMC: 11188085. DOI: 10.1101/2024.02.22.581453.


NLRP4E regulates actin cap formation through SRC and CDC42 during oocyte meiosis.

Shi L, Wang Y, Yang Y, Li Q, Yang Z, Sun L Cell Mol Biol Lett. 2024; 29(1):68.

PMID: 38730334 PMC: 11088158. DOI: 10.1186/s11658-024-00580-y.


MRCK ensures cortex-chromatin "social distancing" to enable egg spindle rotation.

Totsuka T, Akera T, Olson M J Cell Biol. 2023; 222(11).

PMID: 37843812 PMC: 10579697. DOI: 10.1083/jcb.202310009.


References
1.
Li R, Bowerman B . Symmetry breaking in biology. Cold Spring Harb Perspect Biol. 2010; 2(3):a003475. PMC: 2829966. DOI: 10.1101/cshperspect.a003475. View

2.
Akera T, Chmatal L, Trimm E, Yang K, Aonbangkhen C, Chenoweth D . Spindle asymmetry drives non-Mendelian chromosome segregation. Science. 2017; 358(6363):668-672. PMC: 5906099. DOI: 10.1126/science.aan0092. View

3.
Matson S, Markoulaki S, Ducibella T . Antagonists of myosin light chain kinase and of myosin II inhibit specific events of egg activation in fertilized mouse eggs. Biol Reprod. 2005; 74(1):169-76. DOI: 10.1095/biolreprod.105.046409. View

4.
Wolfe B, Takaki T, Petronczki M, Glotzer M . Polo-like kinase 1 directs assembly of the HsCyk-4 RhoGAP/Ect2 RhoGEF complex to initiate cleavage furrow formation. PLoS Biol. 2009; 7(5):e1000110. PMC: 2680334. DOI: 10.1371/journal.pbio.1000110. View

5.
Dasso M, Seki T, Azuma Y, Ohba T, Nishimoto T . A mutant form of the Ran/TC4 protein disrupts nuclear function in Xenopus laevis egg extracts by inhibiting the RCC1 protein, a regulator of chromosome condensation. EMBO J. 1994; 13(23):5732-44. PMC: 395539. DOI: 10.1002/j.1460-2075.1994.tb06911.x. View