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Polyglycylation of tubulin is essential and affects cell motility and division in Tetrahymena thermophila.

L Xia | B Hai | Y Gao | D Burnette | R Thazhath | J Duan | M H Bré | N Levilliers | M A Gorovsky | J Gaertig
The Journal of cell biology | 2000

We analyzed the role of tubulin polyglycylation in Tetrahymena thermophila using in vivo mutagenesis and immunochemical analysis with modification-specific antibodies. Three and five polyglycylation sites were identified at glutamic acids near the COOH termini of alpha- and beta-tubulin, respectively. Mutants lacking all polyglycylation sites on alpha-tubulin have normal phenotype, whereas similar sites on beta-tubulin are essential. A viable mutant with three mutated sites in beta-tubulin showed reduced tubulin glycylation, slow growth and motility, and defects in cytokinesis. Cells in which all five polyglycylation sites on beta-tubulin were mutated were viable if they were cotransformed with an alpha-tubulin gene whose COOH terminus was replaced by the wild-type COOH terminus of beta-tubulin. In this double mutant, beta-tubulin lacked detectable polyglycylation, while the alpha-beta tubulin chimera was hyperglycylated compared with alpha-tubulin in wild-type cells. Thus, the essential function of polyglycylation of the COOH terminus of beta-tubulin can be transferred to alpha-tubulin, indicating it is the total amount of polyglycylation on both alpha- and beta-tubulin that is essential for survival.

Pubmed ID: 10831613

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Associated grants

  • Agency: NIGMS NIH HHS, United States
    Id: GM 26973
  • Agency: NIGMS NIH HHS, United States
    Id: GM 54017

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