AbstractL-Type calcium channel was expressed in Xenopus laevis oocytes injected with RNAs coding for different cardiac Cu2+ channel subunits, or with total heart RNA. The effects of activation of protein kinase C (PKC) by the phorbol ester PMA (4β-phorbol 12-myristate 13-acetate) were studied. Currents through channels composed of the main (α1) subunit alone were initially increased and then decreased by PMA. A similar biphasic modulation was observed when the α1 subunit was expressed in combination with α2/δ, β and/or γ subunits, and when the channels were expressed following injection of total rat heart RNA. No effects on the voltage dependence of activation were observed. The effects of PMA were blocked by staurosporine, a protein kinase...
L-type voltage dependent Ca (2+) channels (L-VDCCs; Cav 1.2) are crucial in cardiovascular physiolog...
AbstractThe class A Ca2+ channel αl subunit (αlA) was expressed in Xenopus oocytes alone or in combi...
High voltage-activated (HVA) calcium channels from rat brain and rabbit heart are expressed in Xenop...
L-Type calcium channel was expressed in Xenopus laevis oocytes injected with RNAs coding for differe...
L.Type calcium chalm¢l was expressed in Xem~pus hteris oocytes injected with RNAs coding Ibr differe...
AbstractThe well-characterized enhancement of the cardiac Ca2+ L-type current by protein kinase A (P...
AbstractAlthough T-type Ca2+ channels have been implicated in numerous physiological functions, thei...
AbstractActivation of Gαs via β-adrenergic receptors enhances the activity of cardiac voltage-depend...
Activation of G(alpha s) via beta-adrenergic receptors enhances the activity of cardiac voltage-depe...
AbstractWe investigated the regulation of cardiac cystic fibrosis transmembrane conductance regulato...
L-type-voltage-dependent Ca(2+) channels (L-VDCCs; CaV1.2, α(1C)), crucial in cardiovascular physiol...
AbstractWe have investigated in Xenopus oocytes the effects of phorbol ester-induced protein kinase ...
AbstractCalcium entry into Xenopus oocyte occurs mainly through voltage-dependent calcium channels. ...
AbstractIn Xenopus oocytes, Ca2+ influx through an endogenous voltage-gated Ca2+ channel activates a...
AbstractXenopus oocytes injected with rat cerebellar mRNA expressed functional voltage-dependent Ca ...
L-type voltage dependent Ca (2+) channels (L-VDCCs; Cav 1.2) are crucial in cardiovascular physiolog...
AbstractThe class A Ca2+ channel αl subunit (αlA) was expressed in Xenopus oocytes alone or in combi...
High voltage-activated (HVA) calcium channels from rat brain and rabbit heart are expressed in Xenop...
L-Type calcium channel was expressed in Xenopus laevis oocytes injected with RNAs coding for differe...
L.Type calcium chalm¢l was expressed in Xem~pus hteris oocytes injected with RNAs coding Ibr differe...
AbstractThe well-characterized enhancement of the cardiac Ca2+ L-type current by protein kinase A (P...
AbstractAlthough T-type Ca2+ channels have been implicated in numerous physiological functions, thei...
AbstractActivation of Gαs via β-adrenergic receptors enhances the activity of cardiac voltage-depend...
Activation of G(alpha s) via beta-adrenergic receptors enhances the activity of cardiac voltage-depe...
AbstractWe investigated the regulation of cardiac cystic fibrosis transmembrane conductance regulato...
L-type-voltage-dependent Ca(2+) channels (L-VDCCs; CaV1.2, α(1C)), crucial in cardiovascular physiol...
AbstractWe have investigated in Xenopus oocytes the effects of phorbol ester-induced protein kinase ...
AbstractCalcium entry into Xenopus oocyte occurs mainly through voltage-dependent calcium channels. ...
AbstractIn Xenopus oocytes, Ca2+ influx through an endogenous voltage-gated Ca2+ channel activates a...
AbstractXenopus oocytes injected with rat cerebellar mRNA expressed functional voltage-dependent Ca ...
L-type voltage dependent Ca (2+) channels (L-VDCCs; Cav 1.2) are crucial in cardiovascular physiolog...
AbstractThe class A Ca2+ channel αl subunit (αlA) was expressed in Xenopus oocytes alone or in combi...
High voltage-activated (HVA) calcium channels from rat brain and rabbit heart are expressed in Xenop...