Block of inhibitory junction potentials and TREK-1 channels in murine colon by Ca2+ store-active drugs

J Physiol. 2008 Feb 15;586(4):1169-84. doi: 10.1113/jphysiol.2007.148718. Epub 2008 Jan 10.

Abstract

Post-junctional enteric inhibitory responses are composed of at least two components attributed to the release of a purine and nitric oxide (NO). The nitrergic component is characterized by membrane potential hyperpolarization; however, the conductances involved and the role of Ca(2+) stores in regulating these conductances are controversial. Conventional microelectrode recordings were performed in intact muscle strips and whole-cell voltage clamp experiments were performed on freshly dispersed cells and COS7 cells stably transfected with TREK-1 channels. Here we show that several Ca(2+) store-active compounds, including caffeine, ryanodine, and cyclopiazonic acid, reduce inhibitory junction potentials and responses to sodium nitroprusside in murine colonic muscles. We previously proposed that two-pore K(+) channels of the TREK family mediate a portion of the hyperpolarization response to NO in colonic muscles. We tested the effects of Ca(2+) store-active drugs in COS cells expressing murine TREK-1 channels and found these compounds block TREK-1 currents. These effects were greatly attenuated by dialysing cells with protein kinase A inhibitory peptide (PKAI). Caffeine also blocked stretch-dependent K(+) (SDK) channels, thought to be due to expression of TREK channels, in colonic myocytes, but these effects were not apparent in excised patches. Taken together our data show that Ca(2+) store-active compounds inhibit TREK-1 channels, native SDK channels, and nitrergic inhibitory junction potentials. These effects appear to be due, in part, to the cAMP/PKA stimulatory actions of these drugs and inhibitory effects of TREK channels.

Publication types

  • Research Support, N.I.H., Extramural

MeSH terms

  • Animals
  • COS Cells
  • Caffeine / pharmacology*
  • Calcium / metabolism
  • Chlorocebus aethiops
  • Colon / cytology
  • Colon / drug effects*
  • Colon / metabolism
  • Cyclic AMP-Dependent Protein Kinases / metabolism
  • Enzyme Inhibitors / pharmacology
  • Indoles / pharmacology*
  • Intercellular Junctions / drug effects*
  • Intercellular Junctions / physiology
  • Membrane Potentials / drug effects*
  • Membrane Potentials / physiology
  • Mice
  • Mice, Inbred C57BL
  • Myocytes, Smooth Muscle / cytology
  • Myocytes, Smooth Muscle / drug effects
  • Myocytes, Smooth Muscle / metabolism
  • Patch-Clamp Techniques
  • Potassium Channels, Tandem Pore Domain / drug effects*
  • Potassium Channels, Tandem Pore Domain / metabolism
  • Ryanodine / pharmacology*

Substances

  • Enzyme Inhibitors
  • Indoles
  • Potassium Channels, Tandem Pore Domain
  • potassium channel protein TREK-1
  • Ryanodine
  • Caffeine
  • Cyclic AMP-Dependent Protein Kinases
  • Calcium
  • cyclopiazonic acid