Rab11 endosomes and Pericentrin coordinate centrosome movement during pre-abscission in vivo

Author:

Krishnan Nikhila12ORCID,Swoger Maxx32,Rathbun Lindsay I12,Fioramonti Peter J12,Freshour Judy12ORCID,Bates Michael12,Patteson Alison E32,Hehnly Heidi12ORCID

Affiliation:

1. Department of Biology, Syracuse University, Syracuse, NY, USA

2. BioInspired Institute, Syracuse University, Syracuse, NY, USA

3. Department of Physics, Syracuse University, Physics Building, Syracuse, NY, USA

Abstract

The last stage of cell division involves two daughter cells remaining interconnected by a cytokinetic bridge that is cleaved during abscission. Conserved between the zebrafish embryo and human cells, we found that the oldest centrosome moves in a Rab11-dependent manner towards the cytokinetic bridge sometimes followed by the youngest. Rab11-endosomes are organized in a Rab11-GTP dependent manner at the mother centriole during pre-abscission, with Rab11 endosomes at the oldest centrosome being more mobile compared with the youngest. The GTPase activity of Rab11 is necessary for the centrosome protein, Pericentrin, to be enriched at the centrosome. Reduction in Pericentrin expression or optogenetic disruption of Rab11-endosome function inhibited both centrosome movement towards the cytokinetic bridge and abscission, resulting in daughter cells prone to being binucleated and/or having supernumerary centrosomes. These studies suggest that Rab11-endosomes contribute to centrosome function during pre-abscission by regulating Pericentrin organization resulting in appropriate centrosome movement towards the cytokinetic bridge and subsequent abscission.

Funder

National Institutes of Health

US Army Medical Research Acquisition Activity

Syracuse University BioInspired Seed Grant

Publisher

Life Science Alliance, LLC

Subject

Health, Toxicology and Mutagenesis,Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Ecology

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