The Arabidopsis Microtubule-Associated Protein AtMAP65-1: Molecular Analysis of Its Microtubule Bundling Activity
Open Access
- 23 July 2004
- journal article
- Published by Oxford University Press (OUP) in Plant Cell
- Vol. 16 (8) , 2035-2047
- https://doi.org/10.1105/tpc.104.023937
Abstract
The 65-kD microtubule-associated protein (MAP65) family is a family of plant microtubule-bundling proteins. Functional analysis is complicated by the heterogeneity within this family: there are nine MAP65 genes in Arabidopsis thaliana, AtMAP65-1 to AtMAP65-9. To begin the functional dissection of the Arabidopsis MAP65 proteins, we have concentrated on a single isoform, AtMAP65-1, and examined its effect on the dynamics of mammalian microtubules. We show that recombinant AtMAP65-1 does not promote polymerization and does not stabilize microtubules against cold-induced microtubule depolymerization. However, we show that it does induce microtubule bundling in vitro and that this protein forms 25-nm cross-bridges between microtubules. We further demonstrate that the microtubule binding region resides in the C-terminal half of the protein and that Ala409 and Ala420 are essential for the interaction with microtubules. Ala420 is a conserved amino acid in the AtMAP65 family and is mutated to Val in the cytokinesis-defective mutant pleiade-4 of the AtMAP65-3/PLEIADE gene. We show that AtMAP65-1 can form dimers and that a region in the N terminus is responsible for this activity. Neither the microtubule binding region nor the dimerization region alone could induce microtubule bundling, strongly suggesting that dimerization is necessary to produce the microtubule cross-bridges. In vivo, AtMAP65-1 is ubiquitously expressed both during the cell cycle and in all plant organs and tissues with the exception of anthers and petals. Moreover, using an antiserum raised to AtMAP65-1, we show that AtMAP65-1 binds microtubules at specific stages of the cell cycle.Keywords
This publication has 28 references indexed in Scilit:
- Genome-wide gene expression in an Arabidopsis cell suspensionPlant Molecular Biology, 2003
- EB1 reveals mobile microtubule nucleation sites in ArabidopsisNature Cell Biology, 2003
- Re‐organisation of the cytoskeleton during developmental programmed cell death in Picea abies embryosThe Plant Journal, 2003
- The molecular function of Ase1pThe Journal of cell biology, 2003
- Two New Loci, PLEIADE and HYADE, Implicate Organ-Specific Regulation of Cytokinesis in ArabidopsisPlant Physiology, 2002
- The 65-kDa carrot microtubule-associated protein forms regularly arranged filamentous cross-bridges between microtubulesProceedings of the National Academy of Sciences, 1999
- Floral dip: a simplified method forAgrobacterium‐mediated transformation ofArabidopsis thalianaThe Plant Journal, 1998
- Regulatory sequences of Arabidopsis drive reporter gene expression in nematode feeding structures.Plant Cell, 1997
- Identification and preliminary characterization of a 65 kDa higher-plant microtubule-associated proteinJournal of Cell Science, 1993
- Microtubule Assembly in the Absence of Added NucleotidesProceedings of the National Academy of Sciences, 1973