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Modulation of Tau Subcellular Localization as a Tool to Investigate the Expression of Disease-related Genes
Published on: December 20, 2019
Tau/MAPT disease-associated variant A152T alters tau function and toxicity via impaired retrograde axonal transport
Victoria J Butler1, Dominique A Salazar1, David Soriano-Castell2
1Memory and Aging Center, Department of Neurology, University of California San Francisco, San Francisco, CA, USA.
Abstract:
Mutations in the microtubule-associated protein tau (MAPT) underlie multiple neurodegenerative disorders, yet the pathophysiological mechanisms are unclear. A novel variant in MAPT resulting in an alanine to threonine substitution at position 152 (A152T tau) has recently been described as a significant risk factor for both frontotemporal lobar degeneration and Alzheimer's disease. Here we use complementary computational, biochemical, molecular, genetic and imaging approaches in Caenorhabditis elegans and mouse models to interrogate the effects of the A152T variant on tau function. In silico analysis suggests that a threonine at position 152 of tau confers a new phosphorylation site. This finding is borne out by mass spectrometric survey of A152T tau phosphorylation in C. elegans and mouse. Optical pulse-chase experiments of Dendra2-tau demonstrate that A152T tau and phosphomimetic A152E tau exhibit increased diffusion kinetics and the ability to traverse across the axon initial segment more efficiently than wild-type (WT) tau. A C. elegans model of tauopathy reveals that A152T and A152E tau confer patterns of developmental toxicity distinct from WT tau, likely due to differential effects on retrograde axonal transport. These data support a role for phosphorylation of the variant threonine in A152T tau toxicity and suggest a mechanism involving impaired retrograde axonal transport contributing to human neurodegenerative disease.
Insights
A new tau protein variant (A152T) increases risk for neurodegenerative diseases like Alzheimer's. This variant
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- Mutations in microtubule-associated protein tau (MAPT) are linked to neurodegenerative disorders.
- The A152T MAPT variant is a risk factor for frontotemporal lobar degeneration and Alzheimer's disease.
- Pathophysiological mechanisms of tau variants remain unclear.
Purpose of the Study:
- Investigate the functional effects of the A152T tau variant.
- Elucidate the role of A152T tau in neurodegeneration.
Main Methods:
- Computational analysis (in silico)
- Biochemical assays
- Molecular and genetic studies in Caenorhabditis elegans and mouse models
- Mass spectrometry
- Optical pulse-chase experiments
- Imaging approaches
Main Results:
- In silico analysis predicted a new phosphorylation site at threonine 152 in A152T tau.
- Mass spectrometry confirmed increased phosphorylation of A152T tau.
- A152T tau and phosphomimetic A152E tau showed altered diffusion kinetics and axonal transport.
- A152T and A152E tau induced distinct developmental toxicity patterns in C. elegans, linked to impaired retrograde axonal transport.
Conclusions:
- Phosphorylation of the threonine residue in A152T tau contributes to its toxicity.
- Impaired retrograde axonal transport is a potential mechanism in A152T tau-associated neurodegenerative diseases.
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