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  4. The F-Actin Binding Protein Cortactin Regulates The Dynamics Of The Exocytotic Fusion Pore Through Its Sh3 Domain
 
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The F-Actin Binding Protein Cortactin Regulates The Dynamics Of The Exocytotic Fusion Pore Through Its Sh3 Domain

Date Issued
2017-05-04
Author(s)
Cárdenas, Ana  
Facultad de Ciencias  
Arlek M. González‐Jamett
María José Guerra Palmero
María José Olivares
Valentina Haro‐Acuña
Ximena Báez‐Matus
Jacqueline Vásquez-Navarrete
Fanny Momboisse
Narcisa Martı́nez-Quiles
DOI
10.3389/fncel.2017.00130
WoS ID
WOS:000403290000002
Abstract
Upon cell stimulation, the network of cortical actin filaments is rearranged to facilitate the neurosecretory process. This actin rearrangement includes both disruption of the preexisting actin network and <i>de novo</i> actin polymerization. However, the mechanism by which a Ca<sup>2+</sup> signal elicits the formation of new actin filaments remains uncertain. Cortactin, an actin-binding protein that promotes actin polymerization in synergy with the nucleation promoting factor N-WASP, could play a key role in this mechanism. We addressed this hypothesis by analyzing <i>de novo</i> actin polymerization and exocytosis in bovine adrenal chromaffin cells expressing different cortactin or N-WASP domains, or cortactin mutants that fail to interact with proline-rich domain (PRD)-containing proteins, including N-WASP, or to be phosphorylated by Ca<sup>2+</sup>-dependent kinases, such as ERK1/2 and Src. Our results show that the activation of nicotinic receptors in chromaffin cells promotes cortactin translocation to the cell cortex, where it colocalizes with actin filaments. We further found that, in association with PRD-containing proteins, cortactin contributes to the Ca<sup>2+</sup>-dependent formation of F-actin, and regulates fusion pore dynamics and the number of exocytotic events induced by activation of nicotinic receptors. However, whereas the actions of cortactin on the fusion pore dynamics seems to depend on the availability of monomeric actin and its phosphorylation by ERK1/2 and Src kinases, cortactin regulates the extent of exocytosis by a mechanism independent of actin polymerization. Together our findings point out a role for cortactin as a critical modulator of actin filament formation and exocytosis in neuroendocrine cells.
Subjects

Cellular And Molecula...

Neurosciences

OCDE Subjects

Medical And Health Sc...

Quartile (Date Issued)
Q1
License
acceso abierto
Open Science Path
https://creativecommons.org/licenses/by/4.0/

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