de Wit_1999_Mol.Biol.Cell_10_4163

Reference

Title : Synaptic vesicles form by budding from tubular extensions of sorting endosomes in PC12 cells - de Wit_1999_Mol.Biol.Cell_10_4163
Author(s) : de Wit H , Lichtenstein Y , Geuze HJ , Kelly RB , van der Sluijs P , Klumperman J
Ref : Mol Biology of the cell , 10 :4163 , 1999
Abstract :

The putative role of sorting early endosomes (EEs) in synaptic-like microvesicle (SLMV) formation in the neuroendocrine PC12 cell line was investigated by quantitative immunoelectron microscopy. By BSA-gold internalization kinetics, four distinct endosomal subcompartments were distinguished: primary endocytic vesicles, EEs, late endosomes, and lysosomes. As in other cells, EEs consisted of vacuolar and tubulovesicular subdomains. The SLMV marker proteins synaptophysin and vesicle-associated membrane protein 2 (VAMP-2) localized to both the EE vacuoles and associated tubulovesicles. Quantitative analysis showed that the transferrin receptor and SLMV proteins colocalized to a significantly higher degree in primary endocytic vesicles then in EE-associated tubulovesicles. By incubating PC12 cells expressing T antigen-tagged VAMP (VAMP-TAg) with antibodies against the luminal TAg, the recycling pathway of SLMV proteins was directly visualized. At 15 degrees C, internalized VAMP-TAg accumulated in the vacuolar domain of EEs. Upon rewarming to 37 degrees C, the labeling shifted to the tubular part of EEs and to newly formed SLMVs. Our data delineate a pathway in which SLMV proteins together with transferrin receptor are delivered to EEs, where they are sorted into SLMVs and recycling vesicles, respectively.

PubMedSearch : de Wit_1999_Mol.Biol.Cell_10_4163
PubMedID: 10588650

Related information

Citations formats

de Wit H, Lichtenstein Y, Geuze HJ, Kelly RB, van der Sluijs P, Klumperman J (1999)
Synaptic vesicles form by budding from tubular extensions of sorting endosomes in PC12 cells
Mol Biology of the cell 10 :4163

de Wit H, Lichtenstein Y, Geuze HJ, Kelly RB, van der Sluijs P, Klumperman J (1999)
Mol Biology of the cell 10 :4163