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Identification of a novel tubulin-destabilizing protein related to the chaperone cofactor E

Authors :
Lynne Cassimeris
Nicholas J. Cowan
Michelle Piehl
Francesca Bartolini
Guoling Tian
Sally A. Lewis
Source :
Journal of cell science. 118(Pt 6)
Publication Year :
2005

Abstract

Factors that regulate the microtubule cytoskeleton are critical in determining cell behavior. Here we describe the function of a novel protein that we term E-like based on its sequence similarity to the tubulin-specific chaperone cofactor E. We find that upon overexpression, E-like depolymerizes microtubules by committing tubulin to proteosomal degradation. Our data suggest that this function is direct and is based on the ability of E-like to disrupt the tubulin heterodimer in vitro. Suppression of E-like expression results in an increase in the number of stable microtubules and a tight clustering of endocellular membranes around the microtubule-organizing center, while the properties of dynamic microtubules are unaffected. These observations define E-like as a novel regulator of tubulin stability, and provide a link between tubulin turnover and vesicle transport.

Details

ISSN :
00219533
Volume :
118
Issue :
Pt 6
Database :
OpenAIRE
Journal :
Journal of cell science
Accession number :
edsair.doi.dedup.....48de23de6ae690d175ede53db38af9e2