Three different classes of alpha 1 Ca2+ channel (alpha 1A, alpha 1B, alpha 1C) were expressed in Xenopus oocytes to determine whether G protein-mediated inhibition is an inherent property of the alpha 1 subunit itself, and if so, whether co-expression of auxiliary subunits modulates the inhibition seen. From our data it is apparent that either alpha 1A or alpha 1B Ca2+ channels expressed alone are sufficient for voltage-dependent G protein inhibition. alpha 1C Ca2+ channels expressed alone do not exhibit the G protein inhibition seen in alpha 1A and alpha 1B channels. Additionally, co-expression of the beta 3 subunit abolishes the ability of G proteins to inhibit currents through alpha 1A and alpha 1B Ca2+ channels. Differential sensitivity...
Activation of G(alpha s) via beta-adrenergic receptors enhances the activity of cardiac voltage-depe...
Activation of G(alpha s) via beta-adrenergic receptors enhances the activity of cardiac voltage-depe...
We used amplifying effects of calcium channel beta subunits to identify endogenous calcium channels ...
AbstractThree different classes of α1 Ca2+ channel (α1A, α1B, α1C) were expressed in Xenopus oocytes...
AbstractThree different classes of α1 Ca2+ channel (α1A, α1B, α1C) were expressed in Xenopus oocytes...
We have shown previously that the Ca2+ channel beta3 subunit is capable of modulating tonic G-protei...
Modulation of Ca2+ channels is an important mechanism for regulation of synaptic strength. However, ...
1The accessory β subunits of voltage-dependent Ca2+ channels (VDCCs) have been shown to regulate the...
AbstractMolecular determinants of Ca2+ channel responsiveness to inhibition by receptor-coupled G pr...
AbstractMolecular determinants of Ca2+ channel responsiveness to inhibition by receptor-coupled G pr...
The Ca2+ channel beta subunit has been shown to reduce the magnitude of G-protein inhibition of Ca2+...
Activation of G(alpha s) via beta-adrenergic receptors enhances the activity of cardiac voltage-depe...
We have examined the basis for G-protein modulation of the neuronal voltage-dependent calcium channe...
Activation of G(alpha s) via beta-adrenergic receptors enhances the activity of cardiac voltage-depe...
Activation of G(alpha s) via beta-adrenergic receptors enhances the activity of cardiac voltage-depe...
Activation of G(alpha s) via beta-adrenergic receptors enhances the activity of cardiac voltage-depe...
Activation of G(alpha s) via beta-adrenergic receptors enhances the activity of cardiac voltage-depe...
We used amplifying effects of calcium channel beta subunits to identify endogenous calcium channels ...
AbstractThree different classes of α1 Ca2+ channel (α1A, α1B, α1C) were expressed in Xenopus oocytes...
AbstractThree different classes of α1 Ca2+ channel (α1A, α1B, α1C) were expressed in Xenopus oocytes...
We have shown previously that the Ca2+ channel beta3 subunit is capable of modulating tonic G-protei...
Modulation of Ca2+ channels is an important mechanism for regulation of synaptic strength. However, ...
1The accessory β subunits of voltage-dependent Ca2+ channels (VDCCs) have been shown to regulate the...
AbstractMolecular determinants of Ca2+ channel responsiveness to inhibition by receptor-coupled G pr...
AbstractMolecular determinants of Ca2+ channel responsiveness to inhibition by receptor-coupled G pr...
The Ca2+ channel beta subunit has been shown to reduce the magnitude of G-protein inhibition of Ca2+...
Activation of G(alpha s) via beta-adrenergic receptors enhances the activity of cardiac voltage-depe...
We have examined the basis for G-protein modulation of the neuronal voltage-dependent calcium channe...
Activation of G(alpha s) via beta-adrenergic receptors enhances the activity of cardiac voltage-depe...
Activation of G(alpha s) via beta-adrenergic receptors enhances the activity of cardiac voltage-depe...
Activation of G(alpha s) via beta-adrenergic receptors enhances the activity of cardiac voltage-depe...
Activation of G(alpha s) via beta-adrenergic receptors enhances the activity of cardiac voltage-depe...
We used amplifying effects of calcium channel beta subunits to identify endogenous calcium channels ...