Axonal Transport RatesIn VivoAre Unaffected by Tau Deletion or Overexpression in Mice
Open Access
- 13 February 2008
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 28 (7) , 1682-1687
- https://doi.org/10.1523/jneurosci.5242-07.2008
Abstract
Elevated tau expression has been proposed as a possible basis for impaired axonal transport in Alzheimer9s disease. To address this hypothesis, we analyzed the movement of pulse radiolabeled proteins in vivo along retinal ganglion cell (RGC) axons of mice that lack tau or overexpress human tau isoforms. Here, we show that the global axonal transport rates of slow and fast transport cargoes in axons are not significantly impaired when tau expression is eliminated or increased. In addition, markers of slow transport (neurofilament light subunit) and fast transport (snap25) do not accumulate in retinas and are distributed normally along optic axons in mice that lack or overexpress tau. Finally, ultrastructural analyses revealed no abnormal accumulations of vesicular organelles or neurofilaments in RGC perikarya or axons in mice overexpressing or lacking tau. These results suggest that tau is not essential for axonal transport and that transport rates in vivo are not significantly affected by substantial fluctuations in tau expression.Keywords
This publication has 22 references indexed in Scilit:
- Tau binding to microtubules does not directly affect microtubule‐based vesicle motilityJournal of Neuroscience Research, 2007
- Molecular motors and mechanisms of directional transport in neuronsNature Reviews Neuroscience, 2005
- Gem GTPase and TauJournal of Biological Chemistry, 2004
- Axonal transport of human α‐synuclein slows with aging but is not affected by familial Parkinson's disease‐linked mutationsJournal of Neurochemistry, 2003
- Tau blocks traffic of organelles, neurofilaments, and APP vesicles in neurons and enhances oxidative stressThe Journal of cell biology, 2002
- Characterization of Pathology in Transgenic Mice Over-Expressing Human Genomic and cDNA Tau TransgenesNeurobiology of Disease, 2000
- Phosphorylation on carboxyl terminus domains of neurofilament proteins in retinal ganglion cell neurons in vivo: influences on regional neurofilament accumulation, interneurofilament spacing, and axon caliber.The Journal of cell biology, 1994
- Altered microtubule organization in small-calibre axons of mice lacking tau proteinNature, 1994
- Brain Levels of Microtubule‐Associated Protein τ Are Elevated in Alzheimer's Disease: A Radioimmuno‐Slot‐Blot Assay for Nanograms of the ProteinJournal of Neurochemistry, 1992
- Developmentally regulated expression of specific tau sequencesPublished by Elsevier ,1989