Reference: Lacefield S and Solomon F (2003) A novel step in beta-tubulin folding is important for heterodimer formation in Saccharomyces cerevisiae. Genetics 165(2):531-41

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Abstract


Undimerized beta-tubulin is toxic in the yeast S. cerevisiae. It can arise if levels of beta-tubulin and alpha-tubulin are unbalanced or if the tubulin heterodimer dissociates. We are using the toxicity of beta-tubulin to understand early steps in microtubule morphogenesis. We find that deletion of PLP1 suppresses toxic beta-tubulin formed by disparate levels of alpha- and beta-tubulin. That suppression occurs either when alpha-tubulin is modestly underexpressed relative to beta-tubulin or when beta-tubulin is inducibly and strongly overexpressed. Plp1p does not affect tubulin expression. Instead, a significant proportion of the undimerized beta-tubulin in plp1Delta cells is less toxic than that in wild-type cells. It is also less able to combine with alpha-tubulin to form a heterodimer. As a result, plp1Delta cells have lower levels of heterodimer. Importantly, plp1Delta cells that also lack Pac10, a component of the GimC/PFD complex, are even less affected by free beta-tubulin. Our results suggest that Plp1p defines a novel early step in beta-tubulin folding.

Reference Type
Journal Article | Research Support, Non-U.S. Gov't | Research Support, U.S. Gov't, P.H.S.
Authors
Lacefield S, Solomon F
Primary Lit For
GRR1 | PAC10 | PLP1 | TUB3 | RBL2

Phenotype Annotations 3 entries for 3 genes


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GenePhenotypeExperiment TypeMutant InformationStrain BackgroundChemicalDetails
PLP1protein/peptide accumulation: abnormal
Reporter: Tub2p
classical geneticsnull
Allele: plp1-Δ
OtherDetails: decreased accumulation of tubulin heterodimers
PAC10resistance to chemicals: decreased
classical geneticsnull
Allele: pac10-Δ
Other10 ug/ml benomyl
TUB3resistance to chemicals: decreased
classical geneticsnull
Allele: tub3-Δ
Other4 ug/ml benomyl
Showing 1 to 3 of 3 entries

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Interactor Interactor Allele Assay Annotation Action Phenotype SGA score P-value Source Reference

Physical Interactions 0 entries for 0 genes

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InteractorInteractorAssayAnnotationActionModification
No physical interaction data for Lacefield S and Solomon F (2003)
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