Dynamic Regulation of Calcium Influx by G-Proteins, Action Potential Waveform, and Neuronal Firing Frequency
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Summary
The results demonstrate that both the profile of Ca2+ entry and the time course and magnitude of its transmitter-induced inhibition are sensitive functions of action potential waveform and frequency.
- Type
- article
- Published
- 1998-09-01
- Cited by
- 104
- References
- 69
- Access
- Open access
- OpenAlex
- https://openalex.org/W1654673127
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:18478706
Keywords
Biophysics, Membrane potential, Gating, Chemistry, Ion channel
References
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- Pharmacological discrimination of N-type from L-type calcium current and its selective modulation by transmitters
- Facilitation of N-Type Calcium Current Is Dependent on the Frequency of Action Potential-Like Depolarizations in Dissociated Cholinergic Basal Forebrain Neurons of the Guinea Pig
- Distinct aspects of neuronal differentiation encoded by frequency of spontaneous Ca2+ transients
- The temperature dependence of high-threshold calcium channel currents recorded from adult rat dorsal raphe neurones.
- Strategic location of calcium channels at transmitter release sites of frog neuromuscular synapses.
- Activation and modulation of neuronal K+ channels by GABA.
- Kinetic and pharmacological properties distinguishing three types of calcium currents in chick sensory neurones.
- The G.L. Brown Prize Lecture. Voltage‐dependent calcium channels and their modulation by neurotransmitters and G proteins
- Action potential broadening and frequency-dependent facilitation of calcium signals in pituitary nerve terminals.
- Adaptation of Ca(2+)-triggered exocytosis in presynaptic terminals.
- Presynaptic spike broadening reduces junctional potential amplitude
- SELECTIVE DEPRESSION OF SYNAPTIC EXCITATION IN CAT SPINAL NEURONES BY BACLOFEN: AN IONTOPHORETIC STUDY
- Identification and Subcellular Localization of the Subunits of L-type Calcium Channels and Adenylyl Cyclase in Cardiac Myocytes*
- Preferential closed-state inactivation of neuronal calcium channels.
- Transmitter Modulation of Neuronal Calcium Channels
- Fluid transport across cultures of human tracheal glands is altered in cystic fibrosis
- P-type calcium channels in rat central and peripheral neurons.
Cited by
- Regulators of G Protein Signaling Attenuate the G Protein–mediated Inhibition of N-Type Ca Channels
- Grina/TMBIM3 modulates voltage-gated CaV2.2 Ca2+ channels in a G-protein-like manner.
- Past and Future of Analog-Digital Modulation of Synaptic Transmission
- Noradrenaline increases high-frequency firing at the calyx of Held synapse during development by inhibiting glutamate release.
- Presynaptic signaling by heterotrimeric G-proteins.
- Activation of Voltage-gated Calcium Current by Action Potentials and Modulation by G Proteins
- Unifying perception and curiosity
- Role of Potassium Channels in Facilitation of Transmitter Release from Frog Motor Nerve Ending (Electrophysiology and Mathematical Simulation)
- Modulation of Neuropeptide Release via Voltage-Dependent and -Independent Signaling in Isolated Neurohypophysial Terminals: a Dissertation
- Modulation of N-type Calcium Channels in Rat Superior Cervical Ganglion Neurons: A Dissertation
- Identification and role of serotonin 5-HT1A and 5-HT1B receptors in primary cultures of rat embryonic rostral raphe nucleus neurons.
- Pathway‐specific use‐dependent dynamics of excitatory synaptic transmission in rat intracortical circuits
- The chemokine interleukin‐8 acutely reduces Ca2+ currents in identified cholinergic septal neurons expressing CXCR1 and CXCR2 receptor mRNAs
- Alternative splicing in the C‐terminus of CaV2.2 controls expression and gating of N‐type calcium channels
- G-Protein Types Involved in Calcium Channel Inhibition at a Presynaptic Nerve Terminal
- Isolectin B4-Positive and -Negative Nociceptors Are Functionally Distinct
- N‐ and P/Q‐type Ca2+ channels in adrenal chromaffin cells
- Changes in the Active Membrane Properties of Rat Supraoptic Neurones During Pregnancy and Lactation
- Developmental changes in metabotropic glutamate receptor–mediated calcium homeostasis
- Calcium channel blockers in the treatment of disease
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