Changing Mad2 levels affects chromosome segregation and spindle assembly checkpoint control in female mouse meiosis I Journal Article


Authors: Niault, T.; Hached, K.; Sotillo, R.; Sorger, P. K.; Maro, B.; Benezra, R.; Wassmann, K.
Article Title: Changing Mad2 levels affects chromosome segregation and spindle assembly checkpoint control in female mouse meiosis I
Abstract: The spindle assembly checkpoint (SAC) ensures correct separation of sister chromatids in somatic cells and provokes a cell cycle arrest in metaphase if one chromatid is not correctly attached to the bipolar spindle. Prolonged metaphase arrest due to overexpression of Mad2 has been shown to be deleterious to the ensuing anaphase, leading to the generation of aneuploidies and tumorigenesis. Additionally, some SAC components are essential for correct timing of prometaphase. In melosis, we and others have shown previously that the Mad2-dependent SAC is functional during the first meiotic division in mouse oocytes, Expression of a dominant-negative form of Mad2 interferes with the SAC in metaphase I, and a knock-down approach using RNA interference accelerates anaphase onset in meiosis I. To prove unambigiously the importance of SAC control for mammalian female meiosis I we analyzed oocyte maturation in Mad2 heterozygote mice, and in oocytes overexpressing a GFP-tagged version of Mad2. In this study we show for the first time that loss of one Mad2 allele, as well as overexpression of Mad2 lead to chromosome missegregation events in meiosis I, and therefore the generation of aneuploid metaphase II oocytes. Furthermore, SAC control is impaired in mad2+/- oocytes, also leading to the generation of aneuploldies in meiosis I. © 2007 Niault et al.
Keywords: controlled study; protein expression; unclassified drug; nonhuman; cell cycle protein; animal cell; chromosome; mouse; animal; meiosis; mammalia; animals; cell cycle proteins; mice; mus; cell division; gene overexpression; rna interference; heterozygote; physiology; cell cycle arrest; anaphase; mitosis spindle; mitotic spindle apparatus; cell separation; aneuploidy; chromosomes; chromosome segregation; mammal cell; protein mad2; oocyte maturation; mad2 protein, mouse; metaphase chromosome
Journal Title: PLoS ONE
Volume: 2
Issue: 11
ISSN: 1932-6203
Publisher: Public Library of Science  
Date Published: 2007-11-28
Start Page: e1165
Language: English
DOI: 10.1371/journal.pone.0001165
PUBMED: 18043727
PROVIDER: scopus
PMCID: PMC2082075
DOI/URL:
Notes: --- - "Cited By (since 1996): 33" - "Export Date: 17 November 2011" - "Source: Scopus"
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  1. Robert Benezra
    146 Benezra