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Liao C, et al.  (2007) Genomic Screening in Vivo Reveals the Role Played by Vacuolar H+ ATPase and Cytosolic Acidification in Sensitivity to DNA-Damaging Agents Such as Cisplatin. Mol Pharmacol 71(2):416-25

Abstract: Screening the Saccharomyces cerevisiae homozygous diploid deletion library against a sublethal concentration of cisplatin revealed seventy-six strains sensitive to the drug. As expected, the largest category of deletes, representing 40% of the sensitive strains, was composed of strains lacking genes involved in DNA replication and damage repair. Deletes lacking function of the highly conserved vacuolar H(+) translocating ATPase (V-ATPase) comprised the category representing the second largest number of sensitive strains. The effect on cell death exhibited by V-ATPase mutants was found to be a general response to various DNA damaging agents as opposed to being specific to cisplatin, as evidenced by sensitivity of the mutants to a DNA alkylating agent, hydroxyurea and UV irradiation. Loss of V-ATPase does not affect DNA repair, as double mutants defective for V-ATPase function and DNA repair pathways were more sensitive to cisplatin than the single mutants. V-ATPase mutants are more prone to DNA damage than wild type cells, indicated by enhanced activation of the DNA damage checkpoint. Vacuole function per se is not cisplatin sensitive, as vacuolar morphology and vacuolar acidification were unaffected by cisplatin in wild type cells. V-ATPase also controls cytoplasmic pH, so the enhanced sensitivity to DNA damage may be associated with the drop in pHi associated with V-ATPase mutants. The increased loss in cell viability induced by cisplatin at lower pH in V-ATPase mutants supports this hypothesis. The loss in viability seen in wild type cells under the same conditions was far less dramatic.

Status: Published Type: Journal Article PubMed ID: 17093137

Topics addressed in this paper

Number of different genes curated to this paper: 72

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Topics Topics not linked to Genes Genes linked to topics (#1 - 10 )
ASF1 ATP2 BUD31 BUR2 CLB2 CTF18 CTF4 CTF8 DBF2 DCC1
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Large-scale phenotype analysis yg ball
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DOC1 EAP1 ERG24 GCN5 GUP1 HCM1 HUR1 IMP2' MMS2 MMS4
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Topics Genes linked to topics (#21 - 30 )
MNN10 MRF1 MUS81 NUP133 POL32 PPH3 PSO2 PSY3 RAD1 RAD10
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Topics Genes linked to topics (#31 - 40 )
RAD14 RAD18 RAD2 RAD4 RAD5 RAD50 RAD51 RAD52 RAD53 RAD55
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Topics Genes linked to topics (#41 - 50 )
RAD57 RAD59 REV3 REV7 RPB9 RPL13B RPL7A SAE2 SFP1 SGS1
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Topics Genes linked to topics (#51 - 60 )
SLX4 SLX5 SOD1 SRO9 SRS2 TOP3 TRK1 VMA10 VMA13 VMA16
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Topics Genes linked to topics (#61 - 70 )
VMA4 VMA6 VMA7 VMA8 VMA9 VPH2 VPS33 VRP1 XRS2 YCL060C
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Topics Genes linked to topics (#71 - 72 )
YDJ1 ZUO1
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