Abstract
Tubulin post-translational modifications regulate microtubule properties and functions. Mitotic spindle microtubules are highly modified. While tubulin detyrosination promotes proper mitotic progression by recruiting specific microtubule-associated proteins motors, tubulin acetyla-tion that occurs on specific microtubule subsets during mitosis is less well understood. Here, we show that siRNA-mediated depletion of the tubulin acetyltransferase ATAT1 in epithelial cells leads to a prolonged prometaphase arrest and the formation of monopolar spindles. This results from collapse of bipolar spindles, as previously described in cells deficient for the mitotic kinase PLK1. ATAT1-depleted mitotic cells have defective recruitment of PLK1 to centrosomes, defects in centro-some maturation and thus microtubule nucleation, as well as labile microtubule-kinetochore attach-ments. Spindle bipolarity could be restored, in the absence of ATAT1, by stabilizing microtubule plus-ends or by increasing PLK1 activity at centrosomes, demonstrating that the phenotype is not just a consequence of lack of K-fiber stability. We propose that microtubule acetylation of K-fibers is required for a recently evidenced cross talk between centrosomes and kinetochores.
Author supplied keywords
Cite
CITATION STYLE
Rasamizafy, S. F., Delsert, C., Rabeharivelo, G., Cau, J., Morin, N., & van Dijk, J. (2021). Mitotic acetylation of microtubules promotes centrosomal plk1 recruitment and is required to maintain bipolar spindle homeostasis. Cells, 10(8). https://doi.org/10.3390/cells10081859
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.