4.7 Article

Exogenous α-Synuclein Decreases Raft Partitioning of Cav2.2 Channels Inducing Dopamine Release

期刊

JOURNAL OF NEUROSCIENCE
卷 34, 期 32, 页码 10603-10615

出版社

SOC NEUROSCIENCE
DOI: 10.1523/JNEUROSCI.0608-14.2014

关键词

Ca(v)2.2 channels; dopamine release; extracellular alpha-synuclein; lipid rafts

资金

  1. Telethon Foundation [GGP10109]

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alpha-Synuclein is thought to regulate neurotransmitter release through multiple interactions with presynaptic proteins, cytoskeletal elements, ion channels, and synaptic vesicles membrane. alpha-Synuclein is abundant in the presynaptic compartment, and its release from neurons and glia has been described as responsible for spreading of alpha-synuclein-derived pathology. alpha-Synuclein-dependent dysregulation of neurotransmitter release might occur via its action on surface-exposed calcium channels. Here, we provide electrophysiological and biochemical evidence to show that alpha-synuclein, applied to rat neurons in culture or striatal slices, selectively activates Ca(v)2.2 channels, and said activation correlates with increased neurotransmitter release. Furthermore, in vivo perfusion of alpha-synuclein into the striatum also leads to acute dopamine release. We further demonstrate that alpha-synuclein reduces the amount of plasma membrane cholesterol and alters the partitioning of Ca(v)2.2 channels, which move from raft to cholesterol-poor areas of the plasma membrane. We provide evidence for a novel mechanism through which alpha-synuclein acts from the extracellular milieu to modulate neurotransmitter release and propose a unifying hypothesis for the mechanism of alpha-synuclein action on multiple targets: the reorganization of plasma membrane microdomains.

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