Literature DB >> 10555555

Carbachol activates a K+ channel of very small conductance in the basolateral membrane of rat pancreatic acinar cells.

M Köttgen1, A Hoefer, S J Kim, U Beschorner, R Schreiber, M J Hug, R Greger.   

Abstract

Secretion of Cl- requires the presence of a K+ conductance to hyperpolarize the cell, and to provide the driving force for Cl- exit via luminal Cl- channels. In the exocrine pancreas Cl- secretion is mediated by an increase in cytosolic Ca2+ ([Ca2+]i). Two types of Ca2+-activated K+ channels could be shown in pancreatic acinar cells of different species. However, there are no data on Ca2+-activated K+ channels in rat pancreatic acini. Here we examine the basolateral K+ conductance of freshly isolated rat pancreatic acinar cells in cell-attached and cell-excised patch-clamp experiments. Addition of carbachol (CCH, 1 micromol/l) to the bath led to the activation of very small conductance K+ channels in cell-attached patches (n=27), producing a noisy macroscopic outward current. The respective outward conductance increased significantly by a factor of 2.1+/-0.1 (n=27). Noise analysis revealed a Lorentzian noise component with a corner frequency (f(c)) of 30.3+/-3.5 Hz (n=19), consistent with channel activity in these patches. The estimated single-channel conductance was 1.5+/-0.4 pS (n=19). In cell-excised patches (inside out) from cells previously stimulated with CCH, channel activity was only observed in the presence of K+ in the bath solution. Under these conditions f(c) was 47.6+/-11.9 Hz (estimated single-channel conductance 1.1+/-0.2 pS, n=20). The current/voltage relationship of the noise showed weak inward rectification and the reversal potential shifted towards E(K+) when Na+ in the bath was replaced by K+. Channel activity in cell-excised patches was slightly reduced by 10 mmol/l Ba2+ (23.6+/-2.1% of the total outward current) and was completely absent when K+ in the bath was replaced by Na+. Reduction of the [Ca2+]i from 1 mmol/l to 1 micromol/l in cell-excised experiments decreased the current by 52.3+/-12.3% (n=5). Expression of K(v)LQT1, one of the possible candidates for a small-conductance K+ channel in rat pancreatic acinar cells, was shown by reverse transcriptase polymerase chain reaction (RT-PCR). In fact, a K(V)LQT-blocker (chromanol 293B) reduced channel activity in seven excised patches. These data suggest that CCH activates very small conductance K+ channels in rat pancreatic acinar cells, most likely via an increase in [Ca2+]i.

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Year:  1999        PMID: 10555555     DOI: 10.1007/s004249900070

Source DB:  PubMed          Journal:  Pflugers Arch        ISSN: 0031-6768            Impact factor:   3.657


  8 in total

1.  Delayed expression of large conductance K+ channels reshaping agonist-induced currents in mouse pancreatic acinar cells.

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2.  TASK-3 immunoreactivity shows differential distribution in the human gastrointestinal tract.

Authors:  Ilona Kovács; Krisztina Pocsai; Gabriella Czifra; László Sarkadi; Géza Szucs; Zoltán Nemes; Zoltán Rusznák
Journal:  Virchows Arch       Date:  2005-03-24       Impact factor: 4.064

3.  Regulation of slowly activating potassium current (I(Ks)) by secretin in rat pancreatic acinar cells.

Authors:  S J Kim; J K Kim; H Pavenstädt; R Greger; M J Hug; M Bleich
Journal:  J Physiol       Date:  2001-09-01       Impact factor: 5.182

4.  Modulation of calcium-dependent chloride secretion by basolateral SK4-like channels in a human bronchial cell line.

Authors:  K Bernard; S Bogliolo; O Soriani; J Ehrenfeld
Journal:  J Membr Biol       Date:  2003-11-01       Impact factor: 1.843

5.  The KCNE Tango - How KCNE1 Interacts with Kv7.1.

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Review 6.  Ion Channel Signature in Healthy Pancreas and Pancreatic Ductal Adenocarcinoma.

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Review 7.  Molecular basis of potassium channels in pancreatic duct epithelial cells.

Authors:  Mikio Hayashi; Ivana Novak
Journal:  Channels (Austin)       Date:  2013-08-20       Impact factor: 2.581

Review 8.  Cyclic AMP-Dependent Regulation of Kv7 Voltage-Gated Potassium Channels.

Authors:  Jennifer van der Horst; Iain A Greenwood; Thomas A Jepps
Journal:  Front Physiol       Date:  2020-06-30       Impact factor: 4.566

  8 in total

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