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E-GEOD-59487 SRP044375, GSE59487 RNA-seq of coding RNA Cricetulus griseus

Mre11 suppresses replication stress and gene amplification proficiency

·Released March 5, 2015 ·Updated March 17, 2015
4
Samples
4
Assays
1
References
Description

Gene amplification, copy-number increases of particular genes and surrounding genomic segments, promotes cancer progression and acquired therapy resistance. Thus, understanding genetic traits that confer gene amplification proficiency is important. The primary step for gene amplification is spontaneous DNA rearrangements initiated by DNA breaks. Here we show that mammalian cells became gene amplification-proficient when we knocked down Mre11/Rad50/Nbs1 (MRN) complex, a multifunctional complex that guards the genome from DNA breaks. Cells with reduced Mre11 experienced severe replication stress, with marked increases of single-stranded breaks followed by double-stranded breaks during DNA replication. Such breaks underlay for the increase in spontaneous gene amplification. Other traits associated with replication stress, such as impaired intra-S phase checkpoint and global transcriptional changes in DNA metabolism genes also contributed to gene amplification proficiency. Our results define Mre11 deficiency as a cause of replication stress and gene amplification proficiency and provide a candidate marker for aggressive cancer phenotypes. We sequenced four samples: 2 control, GFP-expressing samples and 2 Mre11 knockdown cells

References
Replication fork integrity and intra-S phase checkpoint suppress gene amplification.
Kondratova A, Watanabe T, Marotta M, Cannon M, Segall AM, Serre D, Tanaka H
PMID: 25672394
Sample Attributes
organism
Cricetulus griseus
phenotype
GFP-expressing, Mre11 knockdown
tag
Chinese hamster ovary (CHO) cells
Experiment Info
Accession
E-GEOD-59487
GEO ID
SRP044375, GSE59487
Type
RNA-seq of coding RNA
Organism
Cricetulus griseus
Released
March 5, 2015
Updated
March 17, 2015
Submitter
Anna Kondratova、 Anca Segall、 Hisashi Tanaka、 Michael Marotta、 Takaaki Watanabe、 David Serre、 Matthew Cannon、 Hisashi Tanaka
Analysis Services
Analysis Services

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