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PMID: 16706839 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Two PEST-like motifs regulate Ca2+/calpain-mediated cleavage of the CaVbeta3 subunit and provide important determinants for neuronal Ca2+ channel activity.

The European journal of neuroscience ·Vol. 23 ·No. 9 ·2006-05-00 ·Pages 2311-20

Sandoval A, Oviedo N, Tadmouri A, Avila T, De Waard M, Felix R

Abstract

An increase in intracellular Ca2+ due to voltage-gated Ca2+ (CaV) channel opening represents an important trigger for a number of second-messenger-mediated effects ranging from neurotransmitter release to gene activation. Ca2+ entry occurs through the principal pore-forming protein but several ancillary subunits are known to more precisely tune ion influx. Among them, the CaVbeta subunits are perhaps the most important, given that they largely influence the biophysical and pharmacological properties of the channel. Notably, several functional features may be associated with specific structural regions of the CaVbeta subunits emphasizing the relevance of intramolecular domains in the physiology of these proteins. In the current report, we show that CaVbeta3 contains two PEST motifs and undergoes Ca2+ -dependent degradation which can be prevented by the specific calpain inhibitor calpeptin. Using mutant constructs lacking the PEST motifs, we present evidence that they are necessary for the cleavage of CaVbeta3 by calpain. Furthermore, the deletion of the PEST sequences did not affect the binding of CaVbeta3 to the ion-conducting CaV2.2 subunit and, when expressed in human embryonic kidney-293 cells, the PEST motif-deleted CaVbeta3 significantly increased whole-cell current density and retarded channel inactivation. Consistent with this observation, calpeptin treatment of human embryonic kidney-293 cells expressing wild-type CaVbeta3 resulted in an increase in current amplitude. Together, these findings suggest that calpain-mediated CaVbeta3 proteolysis may be an essential process for Ca2+ channel functional regulation.

MeSH Terms
Blotting, Western/methods Calcium/metabolism Calcium Channels/chemistry,genetics,metabolism Calcium Signaling/physiology Calcium-Binding Proteins/antagonists & inhibitors,metabolism Cell Line Dipeptides/pharmacology Dose-Response Relationship, Radiation Electric Stimulation/methods Humans Immunoprecipitation/methods Membrane Potentials/drug effects,physiology,radiation effects Microfilament Proteins/antagonists & inhibitors,metabolism Mutation/physiology Patch-Clamp Techniques/methods Protein Conformation Protein Subunits Recombinant Fusion Proteins/chemistry,genetics,metabolism Time Factors Transfection/methods
Chemicals
Calcium Channels Calcium-Binding Proteins Dipeptides Microfilament Proteins Protein Subunits Recombinant Fusion Proteins calponin calpeptin Calcium
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Sandoval Alejandro
Department of Physiology, Biophysics and Neuroscience, Center for Research and Advanced Studies of the National Polytechnic Institute (Cinvestav-IPN), Mexico City, Mexico.
Oviedo Norma
Tadmouri Abir
Avila Traudy
De Waard Michel
Felix Ricardo
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Article Info
Journal
The European journal of neuroscience
Abbr.
Eur J Neurosci
ISSN
0953-816X
Published
2006-05-00
Pages
2311-20
Language
English
Region
France
NLM ID
8918110
PMCID
PMC2700823
Subset
IM
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