The effects of auxiliary calcium channel subunits on the expression and functional properties of high-voltage activated (HVA) calcium channels have been studied extensively in the Xenopus oocyte expression system, but are less completely characterized in a mammalian cellular environment. Here, we provide the first systematic analysis of the effects of calcium channel beta and alpha2-delta subunits on expression levels and biophysical properties of three different types (Cav1.2, Cav2.1 and Cav2.3) of HVA calcium channels expressed in tsA-201 cells. Our data show that Cav1.2 and Cav2.3 channels yield significant barium current in the absence of any auxiliary subunits. Although calcium channel beta subunits were in principle capable of increas...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
The effects of auxiliary calcium channel subunits on the expression and functional properties of hig...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
The effects of auxiliary calcium channel subunits on the expression and functional properties of hig...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...
High voltage activated (HVA) Ca2+ channels are composed of a pore-forming α1 subunit and the accesso...