Metabolomics,Unknown,Transcriptomics,Genomics,Proteomics

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DSB formation in replication compromised cells


ABSTRACT: DSBs were mapped genome-wide by ssDNA enrichment in cdc6-mn replication comprimsied strains. We mapped DSB sites by detecting DSB-associated ssDNA enrichment on microarrays. To test the role of DNA replication in DSB formation, we mapped ssDNA in a cdc6-mn replication depleted strain. ssDNA was isolated from cells after 5 hours in sporulation medium. As a reference, ssDNA isolated from cells at 0 hrs in sporulation medium prior to DSB formation was differentially labeled and co-hybridized to the same array. For each experiment, we have submitted biological replicates that were hybridized to separate arrays. For each experiment a dye swap was performed and shown to have no effect on the data observed, although not all experiments in this series include the dye swap sample (we have included only two representative experiments for each strain).

ORGANISM(S): Saccharomyces cerevisiae

SUBMITTER: Stephen Bell 

PROVIDER: E-GEOD-35666 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Separation of DNA replication from the assembly of break-competent meiotic chromosomes.

Blitzblau Hannah G HG   Chan Clara S CS   Hochwagen Andreas A   Bell Stephen P SP  

PLoS genetics 20120517 5


The meiotic cell division reduces the chromosome number from diploid to haploid to form gametes for sexual reproduction. Although much progress has been made in understanding meiotic recombination and the two meiotic divisions, the processes leading up to recombination, including the prolonged pre-meiotic S phase (meiS) and the assembly of meiotic chromosome axes, remain poorly defined. We have used genome-wide approaches in Saccharomyces cerevisiae to measure the kinetics of pre-meiotic DNA rep  ...[more]

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