Publication | Open Access
Expression of ARF6 mutants in neuroendocrine cells suggests a role for ARF6 in synaptic vesicle biogenesis
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Citations
13
References
2001
Year
P-selectin-horseradish PeroxidaseMolecular BiologySynaptic SignalingCellular PhysiologySignaling PathwayEndocytic PathwaySecretory PathwayCell SignalingMolecular PhysiologyMembrane BiologyArf6 ExpressionProtein TransportCell BiologyArf6 MutantsActive Arf6 MutantDevelopmental BiologySignal TransductionNatural SciencesNeuroendocrine CellsIntracellular TraffickingCellular BiochemistryMedicineSynaptic Vesicle Biogenesis
ARF6 regulates membrane trafficking between the plasma membrane and endosomes. We investigated the role of ARF6 in synaptic vesicle biogenesis as this process occurs both at the plasma membrane and at endosomes. We used a synaptic vesicle marker protein, p-selectin-horseradish peroxidase (HRP), to follow the effects of ARF6 expression on synaptic vesicle biogenesis in PC12 neuroendocrine cells. Expression of a constitutively active ARF6 mutant increased, while expression of a nucleotide-free ARF6 mutant decreased, p-selectin-HRP levels in the synaptic vesicle peak. These results provide the first direct evidence for a role for ARF6 in synaptic vesicle biogenesis.
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