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PMID: 11559750 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Coordinating the segregation of sister chromatids during the first meiotic division: evidence for sexual dimorphism.

Journal of cell science ·Vol. 114 ·No. Pt 13 ·2001-07-00 ·Pages 2417-26

Hodges CA, LeMaire-Adkins R, Hunt PA

Abstract

Errors during the first meiotic division are common in our species, but virtually all occur during female meiosis. The reason why oogenesis is more error prone than spermatogenesis remains unknown. Normal segregation of homologous chromosomes at the first meiotic division (MI) requires coordinated behavior of the sister chromatids of each homolog. Failure of sister kinetochores to act cooperatively at MI, or precocious sister chromatid segregation (PSCS), has been postulated to be a major contributor to human nondisjunction. To investigate the factors that influence PSCS we utilized the XO mouse, since the chromatids of the single X chromosome frequently segregate at MI, and the propensity for PSCS is influenced by genetic background. Our studies demonstrate that the strain-specific differences in PSCS are due to the actions of an autosomal trans-acting factor or factors. Since components of the synaptonemal complex are thought to play a role in centromere cohesion and kinetochore orientation, we evaluated the behavior of the X chromosome at prophase to determine if this factor influenced the propensity of the chromosome for self-synapsis. We were unable to directly correlate synaptic differences with subsequent segregation behavior. However, unexpectedly, we uncovered a sexual dimorphism that may partially explain sex-specific differences in the fidelity of meiotic chromosome segregation. Specifically, in the male remnants of the synaptonemal complex remain associated with the centromeres until anaphase of the second meiotic division (MII), whereas in the female, all traces of synaptonemal complex (SC) protein components are lost from the chromosomes before the onset of the first meiotic division. This finding suggests a sex-specific difference in the components used to correctly segregate chromosomes during meiosis, and may provide a reason for the high error frequency during female meiosis.

MeSH Terms
Animals Centromere/ultrastructure Chromosome Segregation Meiosis Mice Sex Characteristics Sister Chromatid Exchange Species Specificity Synaptonemal Complex/ultrastructure X Chromosome
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Hodges C A
Department of Genetics and Center for Human Genetics, Case Western Reserve University and University Hospitals of Cleveland, Cleveland, Ohio 44106-4955, USA.
LeMaire-Adkins R
Hunt P A
Article Info
Journal
Journal of cell science
Abbr.
J Cell Sci
ISSN
0021-9533
Published
2001-07-00
Pages
2417-26
Language
English
Region
England
NLM ID
0052457
Subset
IM
Grants
NICHD NIH HHS · R01 HD31866 · United States
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