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Dynamin-2 regulates fusion pore expansion and quantal release through a mechanism that involves actin dynamics in neuroendocrine chromaffin cells.

Authors :
González-Jamett AM
Momboisse F
Guerra MJ
Ory S
Báez-Matus X
Barraza N
Calco V
Houy S
Couve E
Neely A
Martínez AD
Gasman S
Cárdenas AM
Source :
PloS one [PLoS One] 2013 Aug 05; Vol. 8 (8), pp. e70638. Date of Electronic Publication: 2013 Aug 05 (Print Publication: 2013).
Publication Year :
2013

Abstract

Over the past years, dynamin has been implicated in tuning the amount and nature of transmitter released during exocytosis. However, the mechanism involved remains poorly understood. Here, using bovine adrenal chromaffin cells, we investigated whether this mechanism rely on dynamin's ability to remodel actin cytoskeleton. According to this idea, inhibition of dynamin GTPase activity suppressed the calcium-dependent de novo cortical actin and altered the cortical actin network. Similarly, expression of a small interfering RNA directed against dynamin-2, an isoform highly expressed in chromaffin cells, changed the cortical actin network pattern. Disruption of dynamin-2 function, as well as the pharmacological inhibition of actin polymerization with cytochalasine-D, slowed down fusion pore expansion and increased the quantal size of individual exocytotic events. The effects of cytochalasine-D and dynamin-2 disruption were not additive indicating that dynamin-2 and F-actin regulate the late steps of exocytosis by a common mechanism. Together our data support a model in which dynamin-2 directs actin polymerization at the exocytosis site where both, in concert, adjust the hormone quantal release to efficiently respond to physiological demands.

Details

Language :
English
ISSN :
1932-6203
Volume :
8
Issue :
8
Database :
MEDLINE
Journal :
PloS one
Publication Type :
Academic Journal
Accession number :
23940613
Full Text :
https://doi.org/10.1371/journal.pone.0070638