AbstractWe have isolated a cDNA coding for an inward rectifier K+ channel (RBHIK1) from rabbit heart. The cloned cDNA encodes a protein of 427 amino acids with two putative transmembrane segments. The primary structure of RBHIK1 is highly homologous to that of IRK1 which is an inward rectifier K+ channel recently cloned from mouse macrophage by expression cloning. When expressed in Xenopus oocytes, RBHIK1 current showed strong inward rectification and was inhibited by extracellular Ba2+ and Cs+. RNA blot analysis revealed the expression of RBHIKl mRNA in various rabbit tissues, especially high level in the ventricular muscle
AbstractWe have isolated a cDNA coding for a delayed rectifier K+ channel (RBKV1.5) from rabbit hear...
AbstractKir2.1 (IRK1) is the complementary DNA for a component of a cardiac inwardly rectifying pota...
Abstract: Inward rectifier potassium currents are present in different types of cells. In the heart,...
AbstractWe have isolated a cDNA coding for an inward rectifier K+ channel (RBHIK1) from rabbit heart...
AbstractA full-length K+ channel cDNA (RHK1) was isolated from a rat cardiac library using the polym...
AbstractWe have cloned a novel inward rectifier K+ channel (hIRK2) from a human frontal cortex cDNA ...
AbstractA full-length K+ channel cDNA (RHK1) was isolated from a rat cardiac library using the polym...
AbstractWe have isolated a cDNA coding for a delayed rectifier K+ channel (RBKV1.5) from rabbit hear...
AbstractWe have cloned a novel brain-specific inward rectifier K+ channel from a mouse brain cDNA li...
AbstractWe have cloned an inward-rectifier potassium channel from a mouse brain cDNA library, studie...
AbstractWe have cloned a novel inward rectifier potassium channel from a rat brain cDNA library and ...
AbstractWe have cloned a novel inward rectifier potassium channel from a rat brain cDNA library and ...
AbstractWe have cloned a novel inward rectifier K+ channel (hIRK2) from a human frontal cortex cDNA ...
Inward rectifier potassium currents are present in different types of cells. In the heart, the inwar...
AbstractA 5.1 kb cDNA encoding an inward rectifier K+ channel (BIK) was isolated from a bovine aorti...
AbstractWe have isolated a cDNA coding for a delayed rectifier K+ channel (RBKV1.5) from rabbit hear...
AbstractKir2.1 (IRK1) is the complementary DNA for a component of a cardiac inwardly rectifying pota...
Abstract: Inward rectifier potassium currents are present in different types of cells. In the heart,...
AbstractWe have isolated a cDNA coding for an inward rectifier K+ channel (RBHIK1) from rabbit heart...
AbstractA full-length K+ channel cDNA (RHK1) was isolated from a rat cardiac library using the polym...
AbstractWe have cloned a novel inward rectifier K+ channel (hIRK2) from a human frontal cortex cDNA ...
AbstractA full-length K+ channel cDNA (RHK1) was isolated from a rat cardiac library using the polym...
AbstractWe have isolated a cDNA coding for a delayed rectifier K+ channel (RBKV1.5) from rabbit hear...
AbstractWe have cloned a novel brain-specific inward rectifier K+ channel from a mouse brain cDNA li...
AbstractWe have cloned an inward-rectifier potassium channel from a mouse brain cDNA library, studie...
AbstractWe have cloned a novel inward rectifier potassium channel from a rat brain cDNA library and ...
AbstractWe have cloned a novel inward rectifier potassium channel from a rat brain cDNA library and ...
AbstractWe have cloned a novel inward rectifier K+ channel (hIRK2) from a human frontal cortex cDNA ...
Inward rectifier potassium currents are present in different types of cells. In the heart, the inwar...
AbstractA 5.1 kb cDNA encoding an inward rectifier K+ channel (BIK) was isolated from a bovine aorti...
AbstractWe have isolated a cDNA coding for a delayed rectifier K+ channel (RBKV1.5) from rabbit hear...
AbstractKir2.1 (IRK1) is the complementary DNA for a component of a cardiac inwardly rectifying pota...
Abstract: Inward rectifier potassium currents are present in different types of cells. In the heart,...