Early requirement for alpha -SNAP and NSF in the secretory cascade in chromaffin cells
- 15 June 1999
- journal article
- research article
- Published by Springer Nature in The EMBO Journal
- Vol. 18 (12) , 3293-3304
- https://doi.org/10.1093/emboj/18.12.3293
Abstract
NSF and α‐SNAP have been shown to be required for SNARE complex disassembly and exocytosis. However, the exact requirement for NSF and α‐SNAP in vesicular traffic through the secretory pathway remains controversial. We performed a study on the kinetics of exocytosis from bovine chromaffin cells using high time resolution capacitance measurement and electrochemical amperometry, combined with flash photolysis of caged Ca2+ as a fast stimulus. α‐SNAP, a C‐terminal mutant of α‐SNAP, and NEM were assayed for their effects on secretion kinetics. Two kinetically distinct components of catecholamine release can be observed upon fast step‐like elevation of [Ca2+]i. One is the exocytotic burst, thought to represent the readily releasable pool of vesicles. Following the exocytotic burst, secretion proceeds slowly at maintained high [Ca2+]i, which may represent vesicle maturation/recruitment, i.e. some priming steps after docking. α‐SNAP increased the amplitude of both the exocytotic burst and the slow component but did not change their kinetics, which we examined with millisecond time resolution. In addition, NEM only partially inhibited the slow component without altering the exocytotic burst, fusion kinetics and the rate of endocytosis. These results suggest a role for α‐SNAP/NSF in priming granules for release at an early step, but not modifying the fusion of readily releasable granules.Keywords
This publication has 61 references indexed in Scilit:
- Stimulation of NSF ATPase Activity by α-SNAP Is Required for SNARE Complex Disassembly and ExocytosisThe Journal of cell biology, 1997
- Adrenal chromaffin cells contain functionally different SNAP‐25 monomers and SNAP‐25/syntaxin heterodimersFEBS Letters, 1996
- Stimulation of catecholamine secretion from adrenal chromaffin cells by 14‐3‐3 proteins is due to reorganisation of the cortical actin networkFEBS Letters, 1995
- Chromaffin cell cortical actin network dynamics control the size of the release-ready vesicle pool and the initial rate of exocytosisNeuron, 1995
- Association of N‐ethylmaleimide‐sensitive factor with synaptic vesiclesFEBS Letters, 1994
- Implications of the SNARE hypothesis for intracellular membrane topology and dynamicsPublished by Elsevier ,1994
- Phosphatidylinositol transfer protein required for ATP-dependent priming of Ca2+-activated secretionNature, 1993
- SNAP receptors implicated in vesicle targeting and fusionNature, 1993
- Multiple calcium-dependent processes related to secretion in bovine chromaffin cellsNeuron, 1993
- SNAPs, a family of NSF attachment proteins involved in intracellular membrane fusion in animals and yeastPublished by Elsevier ,1990