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PMID: 11238458 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Protein kinase C activation promotes microtubule advance in neuronal growth cones by increasing average microtubule growth lifetimes.

The Journal of cell biology ·Vol. 152 ·No. 5 ·2001-03-05 ·Pages 1033-44

Kabir N, Schaefer AW, Nakhost A, Sossin WS, Forscher P

Abstract

We describe a novel mechanism for protein kinase C regulation of axonal microtubule invasion of growth cones. Activation of PKC by phorbol esters resulted in a rapid, robust advance of distal microtubules (MTs) into the F-actin rich peripheral domain of growth cones, where they are normally excluded. In contrast, inhibition of PKC activity by bisindolylmaleimide and related compounds had no perceptible effect on growth cone motility, but completely blocked phorbol ester effects. Significantly, MT advance occurred despite continued retrograde F-actin flow-a process that normally inhibits MT advance. Polymer assembly was necessary for PKC-mediated MT advance since it was highly sensitive to a range of antagonists at concentrations that specifically interfere with microtubule dynamics. Biochemical evidence is presented that PKC activation promotes formation of a highly dynamic MT pool. Direct assessment of microtubule dynamics and translocation using the fluorescent speckle microscopy microtubule marking technique indicates PKC activation results in a nearly twofold increase in the typical lifetime of a MT growth episode, accompanied by a 1.7-fold increase and twofold decrease in rescue and catastrophe frequencies, respectively. No significant effects on instantaneous microtubule growth, shortening, or sliding rates (in either anterograde or retrograde directions) were observed. MTs also spent a greater percentage of time undergoing retrograde transport after PKC activation, despite overall MT advance. These results suggest that regulation of MT assembly by PKC may be an important factor in determining neurite outgrowth and regrowth rates and may play a role in other cellular processes dependent on directed MT advance.

MeSH Terms
Actins/metabolism Animals Aplysia Axonal Transport Axons/drug effects,enzymology,metabolism Biopolymers/chemistry,metabolism Cells, Cultured Cytoskeleton/drug effects,metabolism Enzyme Activation/drug effects Growth Cones/drug effects,enzymology,metabolism Indoles/pharmacology Kinetics Maleimides/pharmacology Microtubules/drug effects,metabolism Neurons/cytology,drug effects,enzymology,metabolism Nocodazole/pharmacology Octoxynol/pharmacology Phorbol 12,13-Dibutyrate/pharmacology Protein Kinase C/metabolism Protein Structure, Tertiary Solubility/drug effects Tubulin/metabolism
Chemicals
Actins Biopolymers Indoles Maleimides Tubulin Phorbol 12,13-Dibutyrate Octoxynol Protein Kinase C bisindolylmaleimide Nocodazole
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Kabir N
Yale University, New Haven, Connecticut 06520-8103, USA.
Schaefer A W
Nakhost A
Sossin W S
Forscher P
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Article Info
Journal
The Journal of cell biology
Abbr.
J Cell Biol
ISSN
0021-9525
Published
2001-03-05
Pages
1033-44
Language
English
Region
United States
NLM ID
0375356
PMCID
PMC2198821
Subset
IM
Grants
NINDS NIH HHS · 1F32NS11122 · United States
NINDS NIH HHS · R01-NS28695 · United States
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