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Ccr4 contributes to tolerance of replication stress through control of CRT1 mRNA poly(A) tail length

dc.contributor.authorWoolstencroft, Robert N
dc.contributor.authorBeilharz, Traude H
dc.contributor.authorCook, Michael A
dc.contributor.authorPreiss, Thomas
dc.contributor.authorDurocher, Daniel
dc.contributor.authorTyers, Mike
dc.date.accessioned2015-12-10T22:22:14Z
dc.date.issued2006
dc.date.updated2015-12-09T09:01:48Z
dc.description.abstractIn Saccharomyces cerevisiae, DNA replication stress activates the replication checkpoint, which slows S-phase progression, stabilizes slowed or stalled replication forks, and relieves inhibition of the ribonucleotide reductase (RNR) complex. To identify novel genes that promote cellular viability after replication stress, the S. cerevisiae non-essential haploid gene deletion set (4812 strains) was screened for sensitivity to the RNR inhibitor hydroxyurea (HU). Strains bearing deletions in either CCR4 or CAF1/POP2, which encode components of the cytoplasmic mRNA deadenylase complex, were particularly sensitive to HU. We found that Ccr4 cooperated with the Dun1 branch of the replication checkpoint, such that ccr4Δ dun1Δ strains exhibited irreversible hypersensitivity to HU and persistent activation of Rad53. Moreover, because ccr4Δ and chk1Δ exhibited epistasis in several genetic contexts, we infer that Ccr4 and Chk1 act in the same pathway to overcome replication stress. A counterscreen for suppressors of ccr4Δ HU sensitivity uncovered mutations in CRT1, which encodes the transcriptional repressor of the DNA-damage-induced gene regulon. Whereas Dun1 is known to inhibit Crt1 repressor activity, we found that Ccr4 regulates CRT1 mRNA poly(A) tail length and may subtly influence Crt1 protein abundance. Simultaneous overexpression of RNR2, RNR3 and RNR4 partially rescued the HU hypersensitivity of a ccr4Δ dun1Δ strain, consistent with the notion that the RNR genes are key targets of Crt1. These results implicate the coordinated regulation of Crt1 via Ccr4 and Dun1 as a crucial nodal point in the response to DNA replication stress.
dc.identifier.issn0021-9533
dc.identifier.urihttp://hdl.handle.net/1885/52582
dc.publisherThe Company of Biologists Ltd
dc.sourceJournal of Cell Science
dc.subjectKeywords: checkpoint kinase 2; chemokine receptor CCR4; hydroxyurea; messenger RNA; polyadenylated RNA; ribonucleotide reductase; transcription factor; transcription factor Crt1; unclassified drug; article; cell viability; controlled study; DNA damage; DNA replicat Ccr4 mRNA deadenylase; Chk1; Crt1; Dun1; Poly(A) tail; Replication checkpoint; Transcription
dc.titleCcr4 contributes to tolerance of replication stress through control of CRT1 mRNA poly(A) tail length
dc.typeJournal article
local.bibliographicCitation.issuePt24
local.bibliographicCitation.lastpage92
local.bibliographicCitation.startpage5178
local.contributor.affiliationWoolstencroft, Robert N, University of Toronto
local.contributor.affiliationBeilharz, Traude H, Victor Chang Cardiac Research Institute
local.contributor.affiliationCook, Michael A, University of Toronto
local.contributor.affiliationPreiss, Thomas, College of Medicine, Biology and Environment, ANU
local.contributor.affiliationDurocher, Daniel, University of Toronto
local.contributor.affiliationTyers, Mike, University of Toronto
local.contributor.authoruidPreiss, Thomas, u5046545
local.description.embargo2037-12-31
local.description.notesImported from ARIES
local.identifier.absfor060402 - Cell and Nuclear Division
local.identifier.absfor060405 - Gene Expression (incl. Microarray and other genome-wide approaches)
local.identifier.absfor060408 - Genomics
local.identifier.ariespublicationu4020362xPUB250
local.identifier.citationvolume119
local.identifier.doi10.1242/jcs.03221
local.identifier.scopusID2-s2.0-33846160492
local.type.statusPublished Version

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