Pathogenic missense MAPT mutations differentially modulate tau aggregation propensity at nucleation and extension steps
Open Access
- 21 October 2008
- journal article
- Published by Wiley in Journal of Neurochemistry
- Vol. 107 (4), 1113-1123
- https://doi.org/10.1111/j.1471-4159.2008.05692.x
Abstract
Mutations in the MAPT gene encoding tau protein lead to neurofibrillary lesion formation, neurodegeneration, and cognitive decline associated with frontotemporal lobar degeneration. While some pathogenic mutations affect MAPT introns, resulting in abnormal splicing patterns, the majority occur in the tau coding sequence leading to single amino acid changes in tau primary structure. Depending on their location within the polypeptide chain, tau missense mutations have been reported to augment aggregation propensity. To determine the mechanisms underlying mutation-associated changes in aggregation behavior, the fibrillization of recombinant pathogenic mutants R5L, G272V, P301L, V337M, and R406W prepared in a full-length four-repeat human tau background was examined in vitro as a function of time and submicromolar tau concentrations using electron microscopy assay methods. Kinetic constants for nucleation and extension phases of aggregation were then estimated by direct measurement and mathematical simulation. Results indicated that the mutants differ from each other and from wild-type tau in their aggregation propensity. G272V and P301L mutations increased the rates of both filament nucleation and extension reactions, whereas R5L and V337M increased only the nucleation phase. R406W did not differ from wild-type in any kinetic parameter. The results show that missense mutations can directly promote tau filament formation at different stages of the aggregation pathway.Keywords
This publication has 59 references indexed in Scilit:
- Nucleation-dependent Tau Filament FormationJournal of Biological Chemistry, 2008
- Knock-out and transgenic mouse models of tauopathiesNeurobiology of Aging, 2007
- Prediction of Nucleating Sequences from Amyloidogenic Propensities of Tau-Related PeptidesBiochemistry, 2006
- Prediction of “Aggregation-prone” and “Aggregation-susceptible” Regions in Proteins Associated with Neurodegenerative DiseasesJournal of Molecular Biology, 2005
- Site‐specific pseudophosphorylation modulates the rate of tau filament dissociationFEBS Letters, 2005
- Promotion of Hyperphosphorylation by Frontotemporal Dementia Tau MutationsJournal of Biological Chemistry, 2004
- Tau Polymerization: Role of the Amino TerminusBiochemistry, 2003
- Structural and Functional Differences between 3-Repeat and 4-Repeat Tau IsoformsJournal of Biological Chemistry, 2000
- Structure, Microtubule Interactions, and Paired Helical Filament Aggregation by Tau Mutants of Frontotemporal DementiasBiochemistry, 2000
- FTDP‐17 tau mutations decrease the susceptibility of tau to calpain I digestionFEBS Letters, 1999