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BACKGROUND: Cells undergoing meiosis perform two consecutive divisions after a single round of DNA replication. During the first meiotic division, homologous chromosomes segregate to opposite poles. This is achieved by (1) the pairing of maternal and paternal chromosomes via recombination producing ...
ORGANISM(S): Saccharomyces cerevisiae 
Genome haploidization at meiosis depends on two consecutive nuclear divisions, which are controlled by an oscillatory system consisting of Cdk1-cyclin B and the APC/C bound to the Cdc20 activator. How the oscillator generates exactly two divisions has been unclear. We have studied this question in y...
ORGANISM(S): Saccharomyces cerevisiae (Baker's yeast) 
2023-09-03 | PXD044597 | Pride
Effect of overexpression of the meiosis-specific gene SPO13 during mitotic cell cycle
ORGANISM(S): Saccharomyces cerevisiae 
ChIP-seq profile of Spo13 binding sites arrested in prophase I by deletion of the meiotic transcription factor NDT80. Previous ChIP-ChIP data had indicated that Spo13 binding correlates with cohesin binding sites. Therefore, in addition to wild type cells, we also investigated cells deficient of the...
ORGANISM(S): Saccharomyces cerevisiae 
2019-04-25 | GSE112170 | GEO
Genome-wide binding of the meiosis I-specific Spo13 in the presence and absence of cohesin
BACKGROUND: Cells undergoing meiosis perform two consecutive divisions after a single round of DNA replication. During the first meiotic division, homologous chromosomes segregate to opposite poles. This is achieved by (1) the pairing of maternal and paternal chromosomes via recombination producing ...
ORGANISM(S): Saccharomyces cerevisiae 
2006-05-16 | GSE4813 | GEO
Genome-wide binding of the cohesin protector Sgo1 in the presence and absence of the meiosis I-specific Spo13 protein
ChIP-seq profile of Sgo1 binding sites arrested in metaphase I by deletion of the APC/C activator CDC20. The aim of this experiment is to identify whether Sgo1 binding differs in wild type cells and cells deficient of the meiosis I-specific protein Spo13, which is required for retention of pericentr...
ORGANISM(S): Saccharomyces cerevisiae 
2019-04-25 | GSE112167 | GEO
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