Journal of Biological Chemistry
Volume 284, Issue 46, 13 November 2009, Pages 32158-32166
Journal home page for Journal of Biological Chemistry

Membrane Transport, Structure, Function, and Biogenesis
Single Vesicle Millisecond Fusion Kinetics Reveals Number of SNARE Complexes Optimal for Fast SNARE-mediated Membrane Fusion*

https://doi.org/10.1074/jbc.M109.047381Get rights and content
Under a Creative Commons license
open access

SNAREs mediate membrane fusion in intracellular vesicle traffic and neuronal exocytosis. Reconstitution of membrane fusion in vitro proved that SNAREs constitute the minimal fusion machinery. However, the slow fusion rates observed in these systems are incompatible with those required in neurotransmission. Here we present a single vesicle fusion assay that records individual SNARE-mediated fusion events with millisecond time resolution. Docking and fusion of reconstituted synaptobrevin vesicles to target SNARE complex-containing planar membranes are distinguished by total internal reflection fluorescence microscopy as separate events. Docking and fusion are SNAP-25-dependent, require no Ca2+, and are efficient at room temperature. Analysis of the stochastic data with sequential and parallel multi-particle activation models reveals six to nine fast-activating steps. Of all the tested models, the kinetic model consisting of eight parallel reaction rates statistically fits the data best. This might be interpreted by fusion sites consisting of eight SNARE complexes that each activate in a single rate-limiting step in 8 ms.

Cited by (0)

*

This work was supported, in whole or in part, by National Institutes of Health Grant P01 GM72694.

The on-line version of this article (available at http://www.jbc.org) contains supplemental Figs. S1–S3 and Movies S1–S5.