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E-GEOD-72683 GSE72683, SRP063291 other Saccharomyces cerevisiae

Spo11-oligo mapping in S. cerevisiae Ctf19/CCAN kinetochore sub-complex mutant mcm21

·Released Dec. 15, 2015 ·Updated Dec. 19, 2015
2
Samples
2
Assays
1
References
Description

During meiosis, crossover recombination is essential to link homologous chromosomes and drive faithful chromosome segregation. Crossover recombination is non-random across the genome, and centromere-proximal crossovers are associated with an increased risk of aneuploidy, including Trisomy 21 in humans. Here, we identify the conserved Ctf19/CCAN kinetochore sub-complex as a major factor that minimizes potentially deleterious centromere-proximal crossovers in budding yeast. We uncover multi-layered suppression of pericentromeric recombination by the Ctf19 complex, operating across distinct chromosomal distances. The Ctf19 complex prevents meiotic DNA break formation, the initiating event of recombination, proximal to the centromere. The Ctf19 complex independently drives the enrichment of cohesin throughout the broader pericentromere to suppress crossovers, but not DNA breaks. This non-canonical role of the kinetochore in defining a chromosome domain that is refractory to crossovers adds a new layer of functionality by which the kinetochore prevents the incidence of chromosome segregation errors that generate aneuploid gametes. Two samples total: two biological replicate Spo11-oligo maps of S. cerevisiae SK1 mcm21 null mutant

References
The kinetochore prevents centromere-proximal crossover recombination during meiosis.
Vincenten N, Kuhl LM, Lam I, Oke A, Kerr AR, Hochwagen A, Fung J, Keeney S, Vader G, Marston AL
PMID: 26653857
Sample Attributes
epitope tag
Spo11-Flag
genotype
mcm21 null
organism
Saccharomyces cerevisiae
Experiment Info
Accession
E-GEOD-72683
GEO ID
GSE72683, SRP063291
Type
other
Organism
Saccharomyces cerevisiae
Released
Dec. 15, 2015
Updated
Dec. 19, 2015
Submitter
Nadine Vincenten、 Scott Keeney、 Jennifer Fung、 Ashwini Oke、 Gerben Vader、 Lisa-Marie Kuhl、 Isabel Lam、 Alastair Kerr、 Adele L Marston、 Andreas Hochwagen
Analysis Services
Analysis Services

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