ArticleThe Journal of physiology1997
G protein-dependent inhibition of L-type Ca2+ currents by acetylcholine in mouse pancreatic B-cells.
Article in The Journal of physiology, 1997. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 20 papers.
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Who cites it
20 citing papers in PubMed, 48 citations in OpenAlex.
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- Beta-Cell Ion Channels and Their Role in Regulating Insulin Secretion.Comprehensive Physiology · 2021Review
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- Insulin Release Mechanism Modulated by Toxins Isolated from Animal Venoms: From Basic Research to Drug Development Prospects.Molecules (Basel, Switzerland) · 2019Review
- Pancreatic β-Cell Electrical Activity and Insulin Secretion: Of Mice and Men.Physiological reviews · 2018Review
- The Physiology, Pathology, and Pharmacology of Voltage-Gated Calcium Channels and Their Future Therapeutic Potential.Pharmacological reviews · 2015Review
- Ionic mechanisms in pancreatic β cell signaling.Cellular and molecular life sciences : CMLS · 2014Review
- Quercetin induces insulin secretion by direct activation of L-type calcium channels in pancreatic beta cells.British journal of pharmacology · 2013Article
- Ionic mechanisms and Ca2+ dynamics underlying the glucose response of pancreatic β cells: a simulation study.The Journal of general physiology · 2011Article
- Regulation of insulin secretion in islets of Langerhans by Ca(2+)channels.The Journal of membrane biology · 2004Review
- Capacitance measurements of exocytosis in mouse pancreatic alpha-, beta- and delta-cells within intact islets of Langerhans.The Journal of physiology · 2004Article
- Direct and remote modulation of L-channels in chromaffin cells: distinct actions on alpha1C and alpha1D subunits?Molecular neurobiology · 2004Review
- Muscarinic agonists activate Ca2+ store-operated and -independent ionic currents in insulin-secreting HIT-T15 cells and mouse pancreatic beta-cells.The Journal of membrane biology · 2004Article
- Voltage-operated calcium channel heterogeneity in pancreatic beta cells: physiopathological implications.Journal of bioenergetics and biomembranes · 2003Review
- Impaired insulin secretion and glucose tolerance in beta cell-selective Ca(v)1.2 Ca2+ channel null mice.The EMBO journal · 2003Article
- Fast exocytosis with few Ca(2+) channels in insulin-secreting mouse pancreatic B cells.Biophysical journal · 2001Article
- Localized calcium influx in pancreatic beta-cells: its significance for Ca2+-dependent insulin secretion from the islets of Langerhans.Endocrine · 2000Review
- CaM kinase II-dependent mobilization of secretory granules underlies acetylcholine-induced stimulation of exocytosis in mouse pancreatic B-cells.The Journal of physiology · 1999Article
- Neurotransmitters and their receptors in the islets of Langerhans of the pancreas: what messages do acetylcholine, glutamate, and GABA transmit?Endocrine · 1998Review
- Attenuation of changes in G(i)-proteins and adenylyl cyclase in heart failure by an ACE inhibitor, imidapril.Journal of cellular and molecular medicineArticle
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Authors and funding
6 authors at 1 institution in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
1. The effect of acetylcholine (ACh) on voltage-dependent Ca2+ currents in mouse pancreatic B-cells was studied using the whole-cell configuration of the patch-clamp technique. 2. ACh (0.25-250 microM) reversibly and dose-dependently inhibited the Ca2+ current elicited by depolarizations from -80 mV to +10 mV. Maximal inhibition was observed at concentrations > 25 microM where it amounted to approximately 35%. The effect was voltage independent and prevented by atropine (10 microM) suggesting that it was mediated by muscarinic receptors. 3. The inhibitory action of ACh on the Ca2+ current was abolished when the cytoplasmic solution contained GDP beta S (2 mM) and became irreversible when the non-hydrolysable GTP analogue GTP gamma S (10 microM) was included in the pipette. This indicates the participation of G proteins in the inhibitory effect of ACh but pretreatment of the cells with either pertussis or cholera toxin failed to prevent the effect of ACh on the Ca2+ current. 4. ACh remained equally effective as an inhibitor of the whole-cell Ca2+ current in the presence of the L-type Ca2+ channel agonist (-)-Bay K 8644 and after partial inhibition of the current by nifedipine. Addition of omega-agatoxin IVA, omega-conotoxin GVIA or omega-conotoxin MVIIC neither affected the peak Ca2+ current amplitude nor the extent of inhibition produced by ACh. These pharmacological properties indicate that ACh acts by inhibiting L-type Ca2+ channels. 5. The inhibitory action of ACh on the B-cell Ca2+ current was not secondary to elevation of [Ca2+]i and ACh remained equally effective as an inhibitor when Ba2+ was used as the charge carrier, when [Ca2+]i was buffered to low concentrations using EGTA and under experimental conditions preventing the mobilization of Ca2+ from intracellular stores. 6. These results suggest that ACh reduces the whole-cell Ca2+ current in the B-cell through a G protein-regulated, voltage- and Ca(2+)-independent inhibition of L-type Ca2+ channels.
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