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J Biol Chem ; 277(39): 35815-8, 2002 Sep 27.
Artigo em Inglês | MEDLINE | ID: mdl-12118013

RESUMO

Inhibition of inward rectifier K(+) channels under ischemic conditions may contribute to electrophysiological consequences of ischemia such as cardiac arrhythmia. Ischemia causes metabolic inhibition, and the use of metabolic inhibitors is one experimental method of simulating ischemia. The effects of metabolic inhibitors on the activity of inward rectifier K(+) channels K(ir)2.1, K(ir)2.2, and K(ir)2.3 were studied by heterologous expression in Xenopus oocytes and two-electrode voltage clamp. 10 microm carbonyl cyanide p-trifluoromethoxyphenylhydrazone (FCCP) inhibited K(ir)2.2 and K(ir)2.3 currents but was without effect on K(ir)2.1 currents. The rate of decline of current in FCCP was faster for K(ir)2.3 than for K(ir)2.2. K(ir)2.3 was inhibited by 3 mm sodium azide (NaN(3)), whereas K(ir)2.1 and K(ir)2.2 were not. K(ir)2.2 was inhibited by 10 mm NaN(3). All three of these inward rectifiers were inhibited by lowering the pH of the solution perfusing inside-out membrane patches. K(ir)2.3 was most sensitive to pH (pK = 6.9), whereas K(ir)2.1 was least sensitive (pK = 5.9). For K(ir)2.2 the pK was 6.2. These results demonstrate the differential sensitivity of these inward rectifiers to metabolic inhibition and internal pH. The electrophysiological response of a particular cell type to ischemia may depend on the relative expression levels of different inward rectifier genes.


Assuntos
Canais de Potássio Corretores do Fluxo de Internalização/farmacologia , Animais , Carbonil Cianeto p-Trifluormetoxifenil Hidrazona/farmacologia , Clonagem Molecular , DNA Complementar/metabolismo , Concentração de Íons de Hidrogênio , Ionóforos/farmacologia , Potenciais da Membrana , Oócitos/metabolismo , Técnicas de Patch-Clamp , Potássio/metabolismo , Azida Sódica/farmacologia , Transcrição Gênica , Desacopladores/farmacologia , Xenopus laevis
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