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Dihydropyridine-sensitive calcium channels expressed in canine colonic smooth muscle cells
1Department of Physiology, University of Nevada School of Medicine, Reno 89557.
Abstract:
Experiments were performed to identify and characterize the types of calcium channels that regulate inward calcium current in canine colonic smooth muscle. Freshly dispersed smooth muscle cells from the circular layer of the canine proximal colon were used. Single-channel currents were measured with 80 mM Ba2+ as the charge carrier. Small-conductance (10 +/- 2 pS, EBa = 46 +/- 11 mV, n = 9) and large-conductance (21 +/- 1 pS, EBa = 52 +/- 3 mV, n = 19) single-channel currents were observed during depolarizing voltage steps positive to -30 mV. Both types of single-channel currents were inhibited by the addition of 10(-6) M nifedipine to the bath solution. The smaller current was infrequently observed and therefore was not further characterized. Open probability (P(o)) of the larger current amplitude was strongly dependent on voltage. Activation curves were well described by a Boltzmann function with half activation occurring at 4 mV, and a 5-mV increase in membrane potential resulted in an e-fold increase in P(o). BAY K 8644 (1 microM) shifted the activation curve to the left while nifedipine (1 microM) resulted in a right shift. Molecular analysis showed that only the C class of Ca2+ channel alpha 1-subunit is expressed in this tissue. Furthermore, only a single splice variant (rbc-II) was observed. The results suggest that a single class of dihydropyridine-sensitive calcium channels regulates inward calcium current in canine colonic smooth muscle cells.
Insights
This study identified dihydropyridine-sensitive calcium channels in canine colonic smooth muscle. These channels are crucial for regulating inward calcium current in these cells.
Area of Science:
- Physiology
- Pharmacology
- Molecular Biology
Background:
- Inward calcium current is vital for smooth muscle contraction.
- Understanding calcium channel subtypes is key to targeting colonic smooth muscle function.
Purpose of the Study:
- To identify and characterize calcium channels regulating inward calcium current in canine colonic smooth muscle.
- To determine the specific class and splice variant of calcium channels expressed in this tissue.
Main Methods:
- Single-channel patch-clamp electrophysiology on dispersed canine colonic smooth muscle cells.
- Application of pharmacological agents like nifedipine and BAY K 8644.
- Molecular analysis of calcium channel alpha 1-subunit expression.
Main Results:
- Two types of single-channel currents (small and large conductance) were observed, both inhibited by nifedipine.
- The large-conductance channel's open probability was voltage-dependent, with specific activation kinetics.
- Molecular analysis revealed expression of only the C class of Ca2+ channel alpha 1-subunit, specifically the rbc-II splice variant.
Conclusions:
- Canine colonic smooth muscle utilizes a single class of dihydropyridine-sensitive calcium channels.
- The identified channels are likely responsible for regulating inward calcium current in this tissue.