» Articles » PMID: 24150109

Tau Proteins Harboring Neurodegeneration-linked Mutations Impair Kinesin Translocation in Vitro

Overview
Publisher Sage Publications
Specialties Geriatrics
Neurology
Date 2013 Oct 24
PMID 24150109
Citations 4
Authors
Affiliations
Soon will be listed here.
Abstract

We tested the hypothesis that mutant tau proteins that cause neurodegeneration and dementia differentially alter kinesin translocation along microtubules (MTs) relative to normal tau in vitro. We employed complementary in vitro motility assays using purified recombinant kinesin, purified recombinant tau, and purified bovine brain α:β tubulin to isolate interactions among these components without any contribution by cellular regulatory mechanisms. We found that kinesin translocates slower along MTs assembled by any of three independent tau mutants (4-repeat P301L tau, 4-repeat ΔN296 tau, and 4-repeat R406W tau) relative to its translocation rate along MTs assembled by normal, 4-repeat wild type (WT) tau. Moreover, the R406W mutation exhibited isoform specific effects; while kinesin translocation along 4-repeat R406W tau assembled MTs is slower than along MTs assembled by 4-repeat WT tau, the R406W mutation had no effect in the 3-repeat tau context. These data provide strong support for the notion that aberrant modulation of kinesin translocation is a component of tau-mediated neuronal cell death and dementia. Finally, we showed that assembling MTs with taxol before coating them with mutant tau obscured effects of the mutant tau that were readily apparent using more physiologically relevant MTs assembled with tau alone, raising important issues regarding the use of taxol as an experimental reagent and novel insights into therapeutic mechanisms of taxol action.

Citing Articles

Single-molecule imaging of Tau dynamics on the microtubule surface.

Stern J, Lessard D, Ali R, Berger C Methods Cell Biol. 2017; 141:135-154.

PMID: 28882299 PMC: 9848482. DOI: 10.1016/bs.mcb.2017.06.016.


On-chip microtubule gliding assay for parallel measurement of tau protein species.

Subramaniyan Parimalam S, Tarhan M, Karsten S, Fujita H, Shintaku H, Kotera H Lab Chip. 2016; 16(9):1691-7.

PMID: 27056640 PMC: 11377082. DOI: 10.1039/c5lc01486g.


Frontotemporal lobar degeneration: old knowledge and new insight into the pathogenetic mechanisms of tau mutations.

Rossi G, Tagliavini F Front Aging Neurosci. 2015; 7:192.

PMID: 26528178 PMC: 4604311. DOI: 10.3389/fnagi.2015.00192.


Cellular factors modulating the mechanism of tau protein aggregation.

Fontaine S, Sabbagh J, Baker J, Martinez-Licha C, Darling A, Dickey C Cell Mol Life Sci. 2015; 72(10):1863-79.

PMID: 25666877 PMC: 4406819. DOI: 10.1007/s00018-015-1839-9.