4.8 Article

Misato Controls Mitotic Microtubule Generation by Stabilizing the Tubulin Chaperone Protein-1 Complex

期刊

CURRENT BIOLOGY
卷 25, 期 13, 页码 1777-1783

出版社

CELL PRESS
DOI: 10.1016/j.cub.2015.05.033

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资金

  1. PRIN grant from MIUR
  2. BBSRC [BB/K017837/1]
  3. Ministry of Education and Science of Russian Federation [14.Z50.31.0005]
  4. Biotechnology and Biological Sciences Research Council [BB/K017837/1] Funding Source: researchfish
  5. Engineering and Physical Sciences Research Council [1104702] Funding Source: researchfish
  6. BBSRC [BB/K017837/1] Funding Source: UKRI

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Mitotic spindles are primarily composed of microtubules (MTs), generated by polymerization of alpha- and beta-Tubulin hetero-dimers [1, 2]. Tubulins undergo a series of protein folding and post-translational modifications in order to fulfill their functions [3, 4]. Defects in Tubulin polymerization dramatically affect spindle formation and disrupt chromosome segregation. We recently described a role for the product of the conserved misato (mst) gene in regulating mitotic MT generation in flies [5], but the molecular function of Mst remains unknown. Here, we use affinity purification mass spectrometry (AP-MS) to identify interacting partners of Mst in the Drosophila embryo. We demonstrate that Mst associates stoichiometrically with the hetero-octameric Tubulin Chaperone Protein-1 (TCP-1) complex, with the hetero-hexameric Tubulin Prefoldin complex, and with proteins having conserved roles in generating MT-competent Tubulin. We show that RNAi-mediated in vivo depletion of any TCP-1 subunit phenocopies the effects of mutations in mst or the Prefoldin-encoding gene merry-go-round (mgr), leading to monopolar and disorganized mitotic spindles containing few MTs. Crucially, we demonstrate that Mst, but not Mgr, is required for TCP-1 complex stability and that both the efficiency of Tubulin polymerization and Tubulin stability are drastically compromised in mst mutants. Moreover, our structural bioinformatic analyses indicate that Mst resembles the three-dimensional structure of Tubulin monomers and might therefore occupy the TCP-1 complex central cavity. Collectively, our results suggest that Mst acts as a co-factor of the TCP-1 complex, playing an essential role in the Tubulin-folding processes required for proper assembly of spindle MTs.

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