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Kerr GW, et al.  (2012) How to halve ploidy: lessons from budding yeast meiosis. Cell Mol Life Sci 69(18):3037-51

Abstract: Maintenance of ploidy in sexually reproducing organisms requires a specialized form of cell division called meiosis that generates genetically diverse haploid gametes from diploid germ cells. Meiotic cells halve their ploidy by undergoing two rounds of nuclear division (meiosis I and II) after a single round of DNA replication. Research in Saccharomyces cerevisiae (budding yeast) has shown that four major deviations from the mitotic cell cycle during meiosis are essential for halving ploidy. The deviations are (1) formation of a link between homologous chromosomes by crossover, (2) monopolar attachment of sister kinetochores during meiosis I, (3) protection of centromeric cohesion during meiosis I, and (4) suppression of DNA replication following exit from meiosis I. In this review we present the current understanding of the above four processes in budding yeast and examine the possible conservation of molecular mechanisms from yeast to humans.

Status: Published Type: Journal Article PubMed ID: 22481439

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CDC14 CDC5 CDC55 CDC7 CLB3 CLB5 CSM1 DBF4 ESP1 FOB1
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HRR25 IME1 IME2 LRS4 NDT80 NET1 PPH21 PPH22 REC8 RTS1
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