CSIR Central

Wat1/pop3, a conserved WD repeat containing protein acts synergistically with checkpoint kinase Chk1 to maintain genome ploidy in fission yeast S. pombe

IR@CDRI: CSIR-Central Drug Research Institute, Lucknow

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Creator Verma, S K
Ranjan, Rajeev
Kumar, Vikash
Siddiqi, M I
Ahmed, Shakil
 
Date 2014-04-25T06:38:03Z
2014-04-25T06:38:03Z
2014
 
Identifier PLoS ONE, 2014, 9(2), e89587
http://hdl.handle.net/123456789/1213
 
Description Aberrant chromosome segregation defects can lead to aneuploidy, a common characteristic of human solid tumors. Aneuploidy is generated due to defects in the mitotic spindle or due to inefficient mitotic checkpoint response. We have isolated a novel mutant allele of wat1, a WD repeat containing protein that exhibits conditional synthetic lethality with chk1 knock out. We observed only a marginal decrease in the level of α tubulin protein level in wat1-17 mutants after prolong exposure at semi permissive temperature. Interestingly the protein level of α-tubulin was reduced in the chk1Δ wat1-17 double mutant at 18oC with defective microtubule structure. Consistent with loss of microtubule structure in the chk1 deletion background, the double mutant of wat1-17 chk1Δ was hypersensitive to the microtubule destabilizing agent TBZ suggesting severe defects in microtubule integrity in wat1-17 mutant in the absence of Chk1. Combination of wat1-17 with the chk1 deletion also aggravates the defects in the maintenance of genome ploidy. The mutation in wat1-17 was mapped to Cys 233 that was changed to tyrosine. Based on the molecular modeling studies, we hypothesize that the substitution of the bulky Tyr residue at Cys233 position in wat1-17 mutant results in conformational changes. This in turn can affect its intercations with other interacting partners and perturb the overall functions of the Wat1 protein.
 
Format 772759 bytes
application/pdf
 
Language en
 
Relation CSIR-CDRI Communication No. 8607
 
Subject S. pombe
Chk1
Wat1/pop3
Tubulin
Checkpoint
 
Title Wat1/pop3, a conserved WD repeat containing protein acts synergistically with checkpoint kinase Chk1 to maintain genome ploidy in fission yeast S. pombe
 
Type Article