Literature DB >> 11564285

Properties of a Ca(2+)-activated large conductance K(+) channel with ATP sensitivity in human renal proximal tubule cells.

J Hirano1, K Nakamura, M Kubokawa.   

Abstract

The properties of a native Ca(2+)-activated large conductance K(+) channel (BK channel) present in the surface membrane of cultured human renal proximal tubule epithelial cells (RPTECs) were investigated by using the patch-clamp technique. The slope conductance of the BK channel was about 295 pS, and the channel was selective to K(+) over Na(+), with a selectivity ratio of about 12.2. The activity of the channel was almost maximally enhanced by 10(-4 )M or more Ca(2+) in the cytoplasmic surface of the patch membrane and was markedly diminished by reducing the cytoplasmic Ca(2+) to 10(-6) M at the membrane potential of about 0 mV. The depolarization of the patch membrane also enhanced the channel activity, and hyperpolarization lowered it. K(+) channel blockers, Ba(2+) (0.1-1 mM), tetraethylammonium (1 mM), and charybdotoxin (100 nM), were effective for the suppression of channel activity. A significant feature of the K(+) channel was that channel activity maintained by 10(-5)-10(-4 )M Ca(2+) in inside-out patches was inhibited by the addition of ATP (1-10 mM) to the bath solution. ATPgammaS, and a nonhydrolyzable ATP analogue, 5'-adenylylimidodiphosphate (AMP-PNP), also had inhibitory effects on channel activity. However, an inhibitor of ATP-sensitive K(+) channels, glibenclamide (0.1 mM), induced no appreciable change in channel activity from both intra- and extracellular sides. These results suggest that besides the common natures of the BK channel family such as regulation by cytoplasmic Ca(2+) and membrane potential, the BK channel in RPTECs is directly inhibited by intracellular ATP independent of phosphorylation processes and sulfonylurea receptor.

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Year:  2001        PMID: 11564285     DOI: 10.2170/jjphysiol.51.481

Source DB:  PubMed          Journal:  Jpn J Physiol        ISSN: 0021-521X


  5 in total

Review 1.  Molecular diversity and regulation of renal potassium channels.

Authors:  Steven C Hebert; Gary Desir; Gerhard Giebisch; Wenhui Wang
Journal:  Physiol Rev       Date:  2005-01       Impact factor: 37.312

2.  Differential expression of the Kv1 voltage-gated potassium channel family in the rat nephron.

Authors:  Rolando Carrisoza-Gaytán; Carolina Salvador; Beatriz Diaz-Bello; Laura I Escobar
Journal:  J Mol Histol       Date:  2014-06-20       Impact factor: 2.611

3.  Gating behavior of endoplasmic reticulum potassium channels of rat hepatocytes in diabetes.

Authors:  Maedeh Ghasemi; Naser Khodaei; Sajjad Salari; Afsaneh Eliassi; Reza Saghiri
Journal:  Iran Biomed J       Date:  2014-07

4.  Phosphorylation of BK channels modulates the sensitivity to hydrogen sulfide (H2S).

Authors:  Guzel F Sitdikova; Roman Fuchs; Verena Kainz; Thomas M Weiger; Anton Hermann
Journal:  Front Physiol       Date:  2014-11-12       Impact factor: 4.566

5.  Evidence for a KATP Channel in Rough Endoplasmic Reticulum (rerKATP Channel) of Rat Hepatocytes.

Authors:  Sajjad Salari; Maedeh Ghasemi; Javad Fahanik-Babaei; Reza Saghiri; Remy Sauve; Afsaneh Eliassi
Journal:  PLoS One       Date:  2015-05-07       Impact factor: 3.240

  5 in total

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