Endocytic membrane fusion and buckling-induced microtubule severing mediate cell abscission

Author:

Schiel John A.1,Park Kristin2,Morphew Mary K.2,Reid Evan3,Hoenger Andreas2,Prekeris Rytis1

Affiliation:

1. Department of Cell and Developmental Biology, School of Medicine, Anschutz Medical Campus, University of Colorado Denver, Aurora, CO 80045, USA

2. The Boulder Laboratory for 3D Electron Microscopy of Cells, Department of MCD Biology, University of Colorado at Boulder, Boulder, CO 80309, USA

3. Cambridge Institute for Medical Research, Addenbrooke's Hospital, Cambridge CB2 0XY, UK

Abstract

Cytokinesis and abscission are complicated events that involve changes in membrane transport and cytoskeleton organization. We have used the combination of time-lapse microscopy and correlative high-resolution 3D tomography to analyze the regulation and spatio-temporal remodeling of endosomes and microtubules during abscission. We show that abscission is driven by the formation of a secondary ingression within the intracellular bridge connecting two daughter cells. The initiation and expansion of this secondary ingression requires recycling endosome fusion with the furrow plasma membrane and nested central spindle microtubule severing. These changes in endosome fusion and microtubule reorganization result in increased intracellular bridge plasma membrane dynamics and abscission. Finally, we show that central spindle microtubule reorganization is driven by localized microtubule buckling and breaking, rather than by spastin-dependent severing. Our results provide a new mechanism for mediation and regulation of the abscission step of cytokinesis.

Publisher

The Company of Biologists

Subject

Cell Biology

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