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  4. Direct Inhibition Of Ca(V)2.3 By Gem Is Dynamin Dependent And Does Not Require A Direct Alfa/Beta Interaction
 
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Direct Inhibition Of Ca(V)2.3 By Gem Is Dynamin Dependent And Does Not Require A Direct Alfa/Beta Interaction

Journal
Biochemical and Biophysical Research Communications
Date Issued
2021-11-17
Author(s)
Gustavo F. Contreras
Jonathan Saavedra
Nieves Navarro-Quezada
Guido Mellado
Carlos Gonzalez
Neely, Alan  
Facultad de Ciencias  
DOI
10.1016/j.bbrc.2021.11.052
WoS ID
WOS:000768269900014
Abstract
The Rad, Rem, Rem2, and Gem/Kir (RGK) sub-family of small GTP-binding proteins are crucial in regulating high voltage-activated (HVA) calcium channels. RGK proteins inhibit calcium current by either promoting endocytosis or reducing channel activity. They all can associate directly with Ca2+ channel β subunit (CaVβ), and the binding between CaVα1/CaVβ appears essential for the endocytic promotion of CaV1.X, CaV2.1, and CaV2.2 channels. In this study, we investigated the inhibition of CaV2.3 channels by RGK proteins in the absence of CaVβ. To this end, Xenopus laevis oocytes expressing CaV2.3 channels devoid of auxiliary subunit were injected with purified Gem and Rem and found that only Gem had an effect. Ca currents and charge movements were reduced by injection of Gem, pointing to a reduction in the number of channels in the plasma membrane. Since this reduction was ablated by co-expression of the dominant-negative mutant of dynamin K44A, enhanced endocytosis appears to mediate this reduction in the number of channels. Thus, Gem inhibition of CaV2.3 channels would be the only example of a CaVβ independent promotion of dynamin-dependent endocytosis.
Subjects

Biochemistry And Mole...

Biophysics

Biochemistry

Cell Biology

Molecular Biology

OCDE Subjects

Natural Sciences::Bio...

Quartile (Date Issued)
Q3
License
acceso restringido

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