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2.
Pflugers Arch ; 443(5-6): 822-8, 2002 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-11889581

RESUMEN

KCNE1 (IsK, minK) co-assembles with KCNQ1 (KvLQT1) to form voltage-dependent K(+) channels. Both KCNQ1 and KCNE1 are expressed in epithelial cells of gut and exocrine pancreas. We examined the role of KCNQ1/KCNE1 in Cl(-) secretion in small and large intestine and exocrine pancreas using the KCNE1 knockout mouse. Immunofluorescence revealed a similar basolateral localization of KCNQ1 in jejunum and colon of KCNE1 wild-type and knockout mice. Electrogenic Cl(-) secretion in the colon was not affected by gene disruption of KCNE1; in jejunum forskolin-induced short-circuit current was some 40% smaller but without being significantly different. Inhibition of KCNQ1 channels by 293B (IC(50) 1 micromol l(-1)) and by IKS224 (IC(50) 14 nmol l(-1)) strongly diminished intestinal Cl(-) secretion. In exocrine pancreas of wild-type mice, KCNQ1 was predominantly located at the basolateral membrane. In KCNE1 knockout mice, however, the basolateral staining was less pronounced and the distribution of secretory granules was irregular. A slowly activating and 293B-sensitive K(+) current was activated via cholinergic stimulation in pancreatic acinar cells of wild-type mice. In KCNE1 knockout mice this K(+) current was strongly reduced. In conclusion intestinal Cl(-) secretion is independent from KCNE1 but requires KCNQ1. In mouse pancreatic acini KCNQ1 probably co-assembled with KCNE1 leads to a voltage-dependent K(+) current that might be of importance for electrolyte and enzyme secretion.


Asunto(s)
Mucosa Intestinal/metabolismo , Páncreas/metabolismo , Canales de Potasio con Entrada de Voltaje , Canales de Potasio/genética , Canales de Potasio/metabolismo , Animales , Cloruros/metabolismo , Colon/metabolismo , Mucosa Intestinal/química , Yeyuno/metabolismo , Canales de Potasio KCNQ , Canal de Potasio KCNQ1 , Potenciales de la Membrana/fisiología , Ratones , Ratones Noqueados , Páncreas/química , Técnicas de Placa-Clamp , Potasio/metabolismo , Canales de Potasio/análisis
3.
Cell Physiol Biochem ; 11(4): 219-30, 2001.
Artículo en Inglés | MEDLINE | ID: mdl-11509830

RESUMEN

BACKGROUND AND AIMS: The Ca(2+)-activated K(+) channel rSK4 is the rat homologue of the human SK4/IK1 (KCNN4) channel. In colonic mucosa rSK4 plays a key role during acetylcholin-induced secretion. This study was aimed to characterize the properties of the rat SK4 channel. METHODS: Electrophysiological measurements were performed on rSK4 expressing Xenopus laevis oocytes and rat colonic crypts. Intracellular Ca(2+) activity was assessed by Oregon Green fluorescence measurements. RESULTS: The 10 pS rSK4 expressed in oocytes was Ca(2+)-sensitive and inhibited by calmodulin antagonists. 1-ethyl-2-benzimidazolinone (1-EBIO), a known activator of SK4/IK1 channels, also activated rSK4. 1-EBIO affected the current neither at saturating Ca(2+) activities nor under Ca(2+)-free conditions, but increased the Ca(2+) sensitivity of rSK4. rSK4 was strongly activated by cytosolic ATP. However, PKA itself, PKA inhibitors and mutation of the PKA phosphorylation site (S332A) did not affect channel activity. The PKC activator 1,2-dioctanoyl-sn-glycerol and the PKC inhibitor bisindolylmaleimide also failed to influence rSK4. CONCLUSION: The Ca(2+)-sensitive rSK4 is activated by 1-EBIO probably via facilitation of the Ca(2+)-calmodulin-rSK4 interaction. The strong ATP-activation of rSK4 is likely to be caused by phosphorylation via a yet unknown kinase and might involve additional subunits.


Asunto(s)
Mucosa Intestinal/metabolismo , Canales de Potasio Calcio-Activados , Canales de Potasio/metabolismo , Potasio/metabolismo , 1-Metil-3-Isobutilxantina/farmacología , Adenosina Trifosfato/farmacología , Animales , Bencimidazoles/farmacología , Calcio/metabolismo , Calcio/farmacología , Calmodulina/antagonistas & inhibidores , Calmodulina/metabolismo , Caribdotoxina/farmacología , Colforsina/farmacología , Colon/metabolismo , Proteínas Quinasas Dependientes de AMP Cíclico/antagonistas & inhibidores , Proteínas Quinasas Dependientes de AMP Cíclico/genética , Proteínas Quinasas Dependientes de AMP Cíclico/metabolismo , Activación Enzimática , Canales de Potasio de Conductancia Intermedia Activados por el Calcio , Ionomicina/farmacología , Oocitos/metabolismo , Técnicas de Placa-Clamp , Fosforilación , Canales de Potasio/efectos de los fármacos , Proteína Quinasa C/metabolismo , Ratas , Proteínas Recombinantes/metabolismo , Sulfonamidas/farmacología , Xenopus laevis
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