A pathologic cascade leading to synaptic dysfunction in α-synuclein-induced neurodegeneration

299Citations
Citations of this article
381Readers
Mendeley users who have this article in their library.

Abstract

Several neurodegenerative diseases are typified by intraneuronal α-synuclein deposits, synaptic dysfunction, and dementia. While even modest α-synuclein elevations can be pathologic, the precise cascade of events induced by excessive α-synuclein and eventually culminating in synaptotoxicity is unclear. To elucidate this, we developed a quantitative model system to evaluate evolving α-synuclein-induced pathologic events with high spatial and temporal resolution, using cultured neurons from brains of transgenic mice overexpressing fluorescent-human-α-synuclein. Transgenic α-synuclein was pathologically altered over time and overexpressing neurons showed striking neurotransmitter release deficits and enlarged synaptic vesicles; a phenotype reminiscent of previous animal models lacking critical presynaptic proteins. Indeed, several endogenous presynaptic proteins involved in exocytosis and endocytosis were undetectable in a subset of transgenic boutons ("vacant synapses") with diminished levels in the remainder, suggesting that such diminutions were triggering the overall synaptic pathology. Similar synaptic protein alterations were also retrospectively seen in human pathologic brains, highlighting potential relevance to human disease. Collectively the data suggest a previously unknown cascade of events where pathologic α-synuclein leads to a loss of a number of critical presynaptic proteins, thereby inducing functional synaptic deficits. Copyright © 2010 the authors.

Cite

CITATION STYLE

APA

Scott, D. A., Tabarean, I., Tang, Y., Cartier, A., Masliah, E., & Roy, S. (2010). A pathologic cascade leading to synaptic dysfunction in α-synuclein-induced neurodegeneration. Journal of Neuroscience, 30(24), 8083–8095. https://doi.org/10.1523/JNEUROSCI.1091-10.2010

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free