CaVβ subunits of voltage-gated calcium channels contain two conserved domains, a src-homology-3 (SH3) domain and a guanylate kinase-like (GK) domain with an intervening HOOK domain. We have shown in a previous study that, although Gβγ-mediated inhibitory modulation of CaV2.2 channels did not require the interaction of a CaVβ subunit with the CaVα1 subunit, when such interaction was prevented by a mutation in the α1 subunit, G protein modulation could not be removed by a large depolarization and showed voltage-independent properties (Leroy et al., J Neurosci 25:6984–6996, 2005). In this study, we have investigated the ability of mutant and truncated CaVβ subunits to support voltage-dependent G protein modulation in order to determine the min...
AbstractMolecular determinants of Ca2+ channel responsiveness to inhibition by receptor-coupled G pr...
The neuronal Cay2.2 calcium channel is inhibited by Gpy subunits of heterotrimeric G-proteins in a v...
Abstractβ-Subunits of voltage-dependent Ca2+ channels regulate both their expression and biophysical...
Abstract CaVβ subunits of voltage-gated calcium channels contain two conserved domains, a src-homolo...
Abstractβ subunits of voltage-gated calcium channels (VGCCs) regulate channel trafficking and functi...
Modulation of Ca2+ channels is an important mechanism for regulation of synaptic strength. However, ...
AbstractVoltage gated Ca2+ channel (VGCC) auxiliary β subunits increase membrane expression of the m...
AbstractVoltage-dependent calcium channels (VDCCs) are heteromultimers composed of a pore-forming α1...
AbstractThe pore-forming component of voltage-gated calcium channels, α1 subunit, contains four stru...
AbstractThe ancillary β subunits modulate the activation and inactivation properties of high-voltage...
SummaryVoltage-dependent G protein (Gβγ) inhibition of N-type (CaV2.2) channels supports presynaptic...
AbstractThe β-subunit of voltage-gated Ca2+ channels plays a dual role in chaperoning the channels t...
1The accessory β subunits of voltage-dependent Ca2+ channels (VDCCs) have been shown to regulate the...
AbstractVoltage-dependent calcium channels (VDCC) are multiprotein assemblies that regulate the entr...
N-type calcium channels (CaV2.2) are pseudotetrameric voltage-gated calcium channels (VGCCs) predomi...
AbstractMolecular determinants of Ca2+ channel responsiveness to inhibition by receptor-coupled G pr...
The neuronal Cay2.2 calcium channel is inhibited by Gpy subunits of heterotrimeric G-proteins in a v...
Abstractβ-Subunits of voltage-dependent Ca2+ channels regulate both their expression and biophysical...
Abstract CaVβ subunits of voltage-gated calcium channels contain two conserved domains, a src-homolo...
Abstractβ subunits of voltage-gated calcium channels (VGCCs) regulate channel trafficking and functi...
Modulation of Ca2+ channels is an important mechanism for regulation of synaptic strength. However, ...
AbstractVoltage gated Ca2+ channel (VGCC) auxiliary β subunits increase membrane expression of the m...
AbstractVoltage-dependent calcium channels (VDCCs) are heteromultimers composed of a pore-forming α1...
AbstractThe pore-forming component of voltage-gated calcium channels, α1 subunit, contains four stru...
AbstractThe ancillary β subunits modulate the activation and inactivation properties of high-voltage...
SummaryVoltage-dependent G protein (Gβγ) inhibition of N-type (CaV2.2) channels supports presynaptic...
AbstractThe β-subunit of voltage-gated Ca2+ channels plays a dual role in chaperoning the channels t...
1The accessory β subunits of voltage-dependent Ca2+ channels (VDCCs) have been shown to regulate the...
AbstractVoltage-dependent calcium channels (VDCC) are multiprotein assemblies that regulate the entr...
N-type calcium channels (CaV2.2) are pseudotetrameric voltage-gated calcium channels (VGCCs) predomi...
AbstractMolecular determinants of Ca2+ channel responsiveness to inhibition by receptor-coupled G pr...
The neuronal Cay2.2 calcium channel is inhibited by Gpy subunits of heterotrimeric G-proteins in a v...
Abstractβ-Subunits of voltage-dependent Ca2+ channels regulate both their expression and biophysical...