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Mol Biol Cell. 2019 Aug 7:mbcE19030183. doi: 10.1091/mbc.E19-03-0183. [Epub ahead of print]

Regulatory mechanisms for the axonal localization of tau protein in neurons.

Author information

1
Laboratory of Ion Channel Pathophysiology, Graduate School of Brain Science.
2
Department of Neuropathology, Faculty of Life and Medical Sciences, and.
3
Center for Research in Neurodegenerative Diseases, Doshisha University, Kyotanabe-shi, Kyoto 610-0394, Japan.

Abstract

Tau is a microtubule (MT)-associated protein, which is thought to be localized to the axon. However, its precise localization in developing neurons and mechanisms for the axonal localization have not been fully addressed. In this study, we found that the axonal localization of tau in cultured rat hippocampal neurons mainly occur during early neuronal development. Interestingly, transient expression of human tau in very immature neurons, but not in mature neurons, mimicked the developmental localization of endogenous tau to the axon. We therefore were able to establish an experimental model, in which exogenously expressed tau can be properly localized to the axon. Using this model, we obtained surprising finding that the axonal localization of tau did not require stable MT-binding. Tau lacking the MT-binding domain (MTBD) exhibited high diffusivity but localized properly to the axon. In contrast, a dephosphorylation-mimetic mutant of the proline-rich region 2 (PRR2) showed reinforced MT-binding and mis-localization. Our results suggest that tight binding to MTs prevents tau from entering the axon and results in mis-localization in the soma and dendrites when expressed in mature neurons. This study therefore provides a novel mechanism independent of MTBD for the axonal localization of tau.

PMID:
31364926
DOI:
10.1091/mbc.E19-03-0183

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