Three types of neuronal calcium channel with different calcium agonist sensitivity
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Summary
Evidence is reported for the coexistence of three types of Ca channel in sensory neurones of the chick dorsal root ganglion and the dihydropyridine Ca agonist Bay K 8644 strongly increases the opening probability of L-, but not T- or N-type channels.
- Type
- article
- Published
- 1985-08-01
- Cited by
- 2,219
- References
- 25
- OpenAlex
- https://openalex.org/W2061056399
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:4345157
Keywords
T-type calcium channel, Biophysics, Dihydropyridine, Neuroscience, Dorsal root ganglion
References
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- Long-opening mode of gating of neuronal calcium channels and its promotion by the dihydropyridine calcium agonist Bay K 8644.
- Prolongation of calcium channel open time by the dihydropyridine derivative BAY K 8644 in cardiac myocytes.
- Evidence for two voltage‐dependent calcium currents in the membrane of the ciliate Stylonychia.
- Novel dihydropyridines with positive inotropic action through activation of Ca2+ channels
- The calcium channel
- Calcium channels: direct identification with radioligand binding studies
- Potassium current suppression by quinidine reveals additional calcium currents in neuroblastoma cells.
- A low voltage-activated calcium conductance in embryonic chick sensory neurons.
- Different modes of Ca channel gating behaviour favoured by dihydropyridine Ca agonists and antagonists
- Determination of the molecular size of the nitrendipine-sensitive Ca2+ channel by radiation inactivation.
- Two types of calcium channels in the somatic membrane of new‐born rat dorsal root ganglion neurones.
- Dihydropyridine derivatives prolong the open state of Ca channels in cultured cardiac cells.
- The agonist effect of dihydropyridines on Ca channels
- A novel type of cardiac calcium channel in ventricular cells
- Alignment of microscopic particles in electric fields and its biological implications.
- How many types of calcium channels exist in neurones
- A low voltage-activated, fully inactivating Ca channel in vertebrate sensory neurones
Cited by
- A toxin (Aga-GI) from the venom of the spider Agelenopsis aperta inhibits the mammalian presynaptic Ca2+ channel coupled to glutamate exocytosis.
- Distribution and functional significance of the P-type, voltage-dependent Ca2+ channels in the mammalian central nervous system.
- Trophic effects of excitatory amino acids in the developing nervous system.
- Membrane currents and pharmacology of retinal bipolar cells: a comparative study on goldfish and mouse.
- Combined therapy with MK‐801 and nimodipine for protection of ischemic brain damage
- Effects of membrane depolarization on intracellular calcium in single nerve terminals.
- Release of Endogenous Amino Acids from Striatal Neurons in Primary Culture
- Calcium regulation in vascular smooth muscle contractility.
- Elevation of a potassium current in differentiating human leukemic (HL‐60) cells
- Neurotransmitter‐Induced Inositol Phosphate Formation in Neurons in Primary Culture
- Three components of the calcium current in cultured glomerulosa cells from rat adrenal gland.
- Bay K8644 like activity of an antibody against a 60 kDa tubular membrane protein.
- Hippocampal synaptic plasticity induced by excitatory amino acids includes changes in sensitivity to the calcium channel blocker, omega-conotoxin.
- Multiple Types of Calcium Channels in Heart Muscle and Neurons
- The assembly of ionic currents in a thalamic neuron. II. The stability and state diagrams
- Calcium antagonist receptors.
- Vasopressor peptides and depolarization stimulated Ca2+-entry into cultured vascular smooth muscle.
- Blockade by funnel web toxin of a calcium current in the intermediate pituitary of the rat.
- Calcium antagonists and vasodilatation.
- Voltage gated calcium channels as targets for analgesics.
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