CRMP-2 binds to tubulin heterodimers to promote microtubule assembly
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- 15 July 2002
- journal article
- Published by Springer Nature in Nature Cell Biology
- Vol. 4 (8), 583-591
- https://doi.org/10.1038/ncb825
Abstract
Regulated increase in the formation of microtubule arrays is thought to be important for axonal growth. Collapsin response mediator protein-2 (CRMP-2) is a mammalian homologue of UNC-33, mutations in which result in abnormal axon termination. We recently demonstrated that CRMP-2 is critical for axonal differentiation. Here, we identify two activities of CRMP-2: tubulin-heterodimer binding and the promotion of microtubule assembly. CRMP-2 bound tubulin dimers with higher affinity than it bound microtubules. Association of CRMP-2 with microtubules was enhanced by tubulin polymerization in the presence of CRMP-2. The binding property of CRMP-2 with tubulin was apparently distinct from that of Tau, which preferentially bound microtubules. In neurons, overexpression of CRMP-2 promoted axonal growth and branching. A mutant of CRMP-2, lacking the region responsible for microtubule assembly, inhibited axonal growth and branching in a dominant-negative manner. Taken together, our results suggest that CRMP-2 regulates axonal growth and branching as a partner of the tubulin heterodimer, in a different fashion from traditional MAPs.Keywords
This publication has 44 references indexed in Scilit:
- Going new places using an old MAP: tau, microtubules and human neurodegenerative diseaseCurrent Opinion in Cell Biology, 2001
- Local Presentation of Substrate Molecules Directs Axon Specification by Cultured Hippocampal NeuronsJournal of Neuroscience, 1999
- Microtubules and Neuronal PolarityNeuron, 1999
- Identification and Characterization of a Retinoic Acid-regulated Human Homologue of the unc-33-like Phosphoprotein Gene (hUlip) from Neuroblastoma CellsPublished by Elsevier ,1997
- Microtubules and axonal growthCurrent Opinion in Cell Biology, 1997
- Collapsin-induced growth cone collapse mediated by an intracellular protein related to UNC-33Nature, 1995
- Neuronal PolarityAnnual Review of Neuroscience, 1994
- Microtubule organization and dynamics dependent on microtubule-associated proteinsCurrent Opinion in Cell Biology, 1994
- Modulation of the dynamic instability of tubulin assembly by the microtubule-associated protein tau.Molecular Biology of the Cell, 1992
- Experimental observations on the development of polarity by hippocampal neurons in culture.The Journal of cell biology, 1989