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Premature dyad separation in meiosis II is the major segregation error with maternal age in mouse oocytes

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posted on 2025-05-08, 17:07 authored by Yan Yun, Simon I. R. Lane, Keith T. Jones
As women get older their oocytes become susceptible to chromosome mis-segregation. This generates aneuploid embryos, leading to increased infertility and birth defects. Here we examined the provenance of aneuploidy by tracking chromosomes and their kinetochores in oocytes from young and aged mice. Changes consistent with chromosome cohesion deterioration were found with age, including increased interkinetochore distance and loss of the centromeric protector of cohesion SGO2 in metaphase II arrested (metII) eggs, as well as a rise in the number of weakly attached bivalents in meiosis I (MI) and lagging chromosomes at anaphase I. However, there were no MI errors in congression or biorientation. Instead, premature separation of dyads in meiosis II was the major segregation defect in aged eggs and these were associated with very low levels of SGO2. These data show that although considerable cohesion loss occurs during MI, its consequences are observed during meiosis II, when centromeric cohesion is needed to maintain dyad integrity.

Funding

ARC

DP110100418

DP1201000946

History

Journal title

Development

Volume

141

Issue

1

Pagination

199-208

Publisher

Company of Biologists

Language

  • en, English

College/Research Centre

Faculty of Health and Medicine

School

School of Biomedical Sciences and Pharmacy

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