FEBS Letters
Volume 581, Issue 11 , Pages 2131-2139, 22 May 2007

Putting the clamps on membrane fusion: How complexin sets the stage for calcium-mediated exocytosis

Edited by Thomas Söllner

Columbia University, Department of Physiology and Cellular Biophysics, 1150 Saint Nicholas Avenue, New York, NY 10032, United States

Received 2 January 2007; received in revised form 15 February 2007; accepted 26 February 2007. published online 05 March 2007.

Abstract 

Three recent papers have addressed a long-standing question in exocytosis: how does a sudden calcium influx trigger a coordinated synchronous release in regulated exocytosis [Giraudo, C.G., Eng, W.S., Melia, T.J. and Rothman, J.E. (2006) A clamping mechanism involved in SNARE-dependent exocytosis. Science 313, 676–680; Schaub, J.R., Lu, X., Doneske, B., Shin, Y.K. and McNew, J.A. (2006) Hemifusion arrest by complexin is relieved by Ca2+–synaptotagmin I. Nat. Struct. Mol. Biol. 13, 748–750; Tang, J., Maximov, A., Shin, O.H., Dai, H., Rizo, J. and Sudhof, T.C. (2006) A complexin/synaptotagmin 1 switch controls fast synaptic vesicle exocytosis. Cell 126, 1175–1187]? Using diverse approaches that include cell-free reconstitution of the membrane fusion machinery and in vivo manipulation of fusogenic proteins, these groups have established that the complexin proteins are fusion clamps. By arresting vesicle secretion just prior to fusion, complexin primes select vesicles for a fast, synchronous response to calcium.

Keywords: Complexin, SNARE, Synaptotagmin, Membrane fusion, Regulated exocytosis

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PII: S0014-5793(07)00232-3

doi:10.1016/j.febslet.2007.02.066

FEBS Letters
Volume 581, Issue 11 , Pages 2131-2139, 22 May 2007