4.8 Article

SADB phosphorylation of γ-tubulin regulates centrosome duplication

Journal

NATURE CELL BIOLOGY
Volume 11, Issue 9, Pages 1081-U86

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/ncb1921

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Funding

  1. Spanish Ministry of Science and Innovation [SAF200405955, 200763624, CSD 2006-00023]
  2. Spanish Association against Cancer
  3. Spanish Ministry of Health [PI050964]
  4. Royal Physiographic Society in Lund
  5. Ake Wibergs, Thelma Zoegas, OE och Edla Johanssons
  6. U-MAS Cancer Research Found
  7. Teggers Fond, EMBO
  8. Swedish Society for Medical Research

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Symmetrical cell division requires duplication of DNA and protein content to generate two daughter cells. Centrosomes also duplicate during cell division, but the mechanism controlling this process is incompletely understood. We describe an alternative splice form of SadB encoding a short SADB Ser/Thr kinase whose activity fluctuates during the cell cycle, localizes to centrosomes, and controls centrosome duplication. Reduction of endogenous SADB levels diminished centrosome numbers, whereas enhanced SADB expression induced centrosome amplification. SADB exerted this action through phosphorylation of gamma-tubulin on Ser 131, as expression of a phosphomimetic Ser 131-to-Asp gamma-tubulin mutant alone increased centrosome numbers, whereas non-phosphorylatable Ala 131-gamma-tubulin impaired centrosome duplication. We propose that SADB kinase activity controls centrosome homeostasis by regulating phosphorylation of gamma-tubulin.

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