Dynamic centriolar localization of Polo and Centrobin in early mitosis primes centrosome asymmetry

Gallaud, Emmanuel and Ramdas Nair, Anjana and Horsley, Nicole and Monnard, Arnaud and Singh, Priyanka and Pham, Tri Thanh and Salvador Garcia, David and Ferrand, Alexia and Cabernard, Clemens and Yamashita, Yukiko M. (2020) Dynamic centriolar localization of Polo and Centrobin in early mitosis primes centrosome asymmetry. PLOS Biology, 18 (8). e3000762. ISSN 1545-7885

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Abstract

Centrosomes, the main microtubule organizing centers (MTOCs) of metazoan cells, contain an older “mother” and a younger “daughter” centriole. Stem cells either inherit the mother or daughter-centriole-containing centrosome, providing a possible mechanism for biased delivery of cell fate determinants. However, the mechanisms regulating centrosome asymmetry and biased centrosome segregation are unclear. Using 3D-structured illumination microscopy (3D-SIM) and live-cell imaging, we show in fly neural stem cells (neuroblasts) that the mitotic kinase Polo and its centriolar protein substrate Centrobin (Cnb) accumulate on the daughter centriole during mitosis, thereby generating molecularly distinct mother and daughter centrioles before interphase. Cnb’s asymmetric localization, potentially involving a direct relocalization mechanism, is regulated by Polo-mediated phosphorylation, whereas Polo’s daughter centriole enrichment requires both Wdr62 and Cnb. Based on optogenetic protein mislocalization experiments, we propose that the establishment of centriole asymmetry in mitosis primes biased interphase MTOC activity, necessary for correct spindle orientation.

Item Type: Article
Subjects: European Repository > Biological Science
Depositing User: Managing Editor
Date Deposited: 15 Feb 2023 04:38
Last Modified: 06 Feb 2024 03:51
URI: http://go7publish.com/id/eprint/1603

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