Literature DB >> 10407085

TTX-sensitive Na(+) and nifedipine-sensitive Ca(2+) channels in rat vas deferens smooth muscle cells.

A E Belevych1, A V Zima, I A Vladimirova, H Hirata, A Jurkiewicz, N H Jurkiewicz, M F Shuba.   

Abstract

The inward currents in single smooth muscle cells (SMC) isolated from epididymal part of rat vas deferens have been studied using whole-cell patch-clamp method. Depolarising steps from holding potential -90 mV evoked inward current with fast and slow components. The component with slow activation possessed voltage-dependent and pharmacological properties characteristic for Ca(2+) current carried through L-type calcium channels (I(Ca)). The fast component of inward current was activated at around -40 mV, reached its peak at 0 mV, and disappeared upon removal of Na ions from bath solution. This current was blocked in dose-dependent manner by tetrodotoxin (TTX) with an apparent dissociation constant of 6.7 nM. On the basis of voltage-dependent characteristics, TTX sensitivity of fast component of inward current and its disappearance in Na-free solution it is suggested that this current is TTX-sensitive depolarisation activated sodium current (I(Na)). Cell dialysis with a pipette solution containing no macroergic compounds resulted in significant inhibition of I(Ca) (depression of peak I(Ca) by about 81% was observed by 13 min of dialysis), while I(Na) remained unaffected during 50 min of dialysis. These data draw first evidence for the existence of TTX-sensitive Na(+) current in single SMC isolated from rat vas deferens. These Na(+) channels do not appear to be regulated by a phosphorylation process under resting conditions.

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Year:  1999        PMID: 10407085     DOI: 10.1016/s0005-2736(99)00075-9

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  2 in total

1.  Electrophysiological and molecular identification of voltage-gated sodium channels in murine vascular myocytes.

Authors:  Sohag Saleh; Shuk Yin M Yeung; Sally Prestwich; Vladimír Pucovsky; Iain Greenwood
Journal:  J Physiol       Date:  2005-07-14       Impact factor: 5.182

2.  Molecular and biophysical properties of voltage-gated Na+ channels in murine vas deferens.

Authors:  Hai-Lei Zhu; Manami Aishima; Hidetaka Morinaga; Richard D Wassall; Atsushi Shibata; Kazuomi Iwasa; Masatoshi Nomura; Masaya Nagao; Katsuo Sueishi; Thomas C Cunnane; Noriyoshi Teramoto
Journal:  Biophys J       Date:  2008-01-11       Impact factor: 4.033

  2 in total

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