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PMID: 18716054 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

CLASP modulates microtubule-cortex interaction during self-organization of acentrosomal microtubules.

Molecular biology of the cell ·Vol. 19 ·No. 11 ·2008-11-00 ·Pages 4730-7

Ambrose JC, Wasteneys GO

Abstract

CLASP proteins associate with either the plus ends or sidewalls of microtubules depending on the subcellular location and cell type. In plant cells, CLASP's distribution along the full length of microtubules corresponds with the uniform anchorage of microtubules to the cell cortex. Using live cell imaging, we show here that loss of CLASP in Arabidopsis thaliana results in partial detachment of microtubules from the cortex. The detached portions undergo extensive waving, distortion, and changes in orientation, particularly when exposed to the forces of cytoplasmic streaming. These deviations from the normal linear polymerization trajectories increase the likelihood of intermicrotubule encounters that are favorable for subsequent bundle formation. Consistent with this, cortical microtubules in clasp-1 leaf epidermal cells are hyper-parallel. On the basis of these data, we identify a novel mechanism where modulation of CLASP activity governs microtubule-cortex attachment, thereby contributing to self-organization of cortical microtubules.

MeSH Terms
Arabidopsis/metabolism Arabidopsis Proteins/metabolism Centrosome/metabolism Cotyledon/cytology,metabolism Microtubule-Associated Proteins/deficiency,metabolism Microtubules/metabolism Models, Biological Mutation/genetics Plant Epidermis/cytology,metabolism
Chemicals
Arabidopsis Proteins CLASP protein, Arabidopsis Microtubule-Associated Proteins
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Ambrose J Christian
The University of British Columbia, Vancouver, BC V6T 1Z4, Canada.
Wasteneys Geoffrey O
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Article Info
Journal
Molecular biology of the cell
Abbr.
Mol Biol Cell
ISSN
1939-4586
Published
2008-11-00
Epub
2008-00-20
Pages
4730-7
Language
English
Region
United States
NLM ID
9201390
PMCID
PMC2575154
Subset
IM
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