Microtubule Organization and Microtubule-Associated Proteins (MAPs)

Publication date

2016-01

Authors

Tortosa Binacua, E.ISNI 0000000443738005
Kapitein, Lukas C.ISNI 0000000389218112
Hoogenraad, C.C.ISNI 0000000396512854

Editors

Emoto, Kazuo
Wong, Rachel
Huang, Eric
Hoogenraad, Casper

Advisors

Supervisors

Document Type

Part of book
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License

Abstract

Dendrites have a unique microtubule organization. In vertebrates, dendritic microtubules are organized in antiparallel bundles, oriented with their plus ends either pointing away or toward the soma. The mixed microtubule arrays control intracellular trafficking and local signaling pathways, and are essential for dendrite development and function. The organization of microtubule arrays largely depends on the combined function of different microtubule regulatory factors or generally named microtubule-associated proteins (MAPs). Classical MAPs, also called structural MAPs, were identified more than 20 years ago based on their ability to bind to and copurify with microtubules. Most classical MAPs bind along the microtubule lattice and regulate microtubule polymerization, bundling, and stabilization. Recent evidences suggest that classical MAPs also guide motor protein transport, interact with the actin cytoskeleton, and act in various neuronal signaling networks. Here, we give an overview of microtubule organization in dendrites and the role of classical MAPs in dendrite development, dendritic spine formation, and synaptic plasticity.

Keywords

Neuron, Dendrite, Cytoskeleton, Microtubule, Microtubuleassociated protein, MAP1, MAP2, MAP4, MAP6, MAP7, MAP9, Tau

Citation

Tortosa Binacua, E, Kapitein, L C & Hoogenraad, C C 2016, Microtubule Organization and Microtubule-Associated Proteins (MAPs). in K Emoto, R Wong, E Huang & C Hoogenraad (eds), Dendrites : Development and Disease. Springer, Japan, pp. 31. https://doi.org/10.1007/978-4-431-56050-0_3