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  Veratridine-induced oscillations of cytosolic calcium and membrane potential in bovine chromaffin cells

Lopez, M., Artalejo, A. R., Garcia, A. G., Neher, E., & Garciasancho, J. (1995). Veratridine-induced oscillations of cytosolic calcium and membrane potential in bovine chromaffin cells. The Journal of Physiology, 482(1), 15-27. doi:10.1113/jphysiol.1995.sp020496.

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The Journal of Physiology - 1995 - L pez.pdf (Publisher version), 3MB
 
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Lopez, M., Author
Artalejo, A. R., Author
Garcia, A. G., Author
Neher, E.1, Author           
Garciasancho, J., Author
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1Department of Membrane Biophysics, MPI for biophysical chemistry, Max Planck Society, ou_578579              

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 Abstract: Veratridine (VTD) induced large oscillations of the cytosolic Ca2+ concentration ([Ca2+]i) and the membrane potential (Vm) in otherwise silent bovine chromaffin cells loaded with fura-2. 2. Depletion of the intracellular Ca2+ stores by thapsigargin or ryanodine did not affect these oscillations. Caffeine had a complex effect, decreasing them in cells with high activity but increasing them in cells with low activity. 3. The [Ca2+]i oscillations required extracellular Ca2+ and Na+ and were blocked by Ni2+ or tetrodotoxin. They were antagonized by high external concentrations of Mg2+ and/or Ca2+. 4. The oscillations of Vm had three phases: (i) slow depolarization (20 mV in 10-40 s); (ii) further fast depolarization (30 mV in 1 s); and (iii) rapid (5 s) repolarization. [Ca2+]i decreased during (i), increased quickly during (ii) with a 1 s delay with regard to the peak depolarization, and decreased during (iii). 5. Slight depolarizations increased the frequency of the oscillations whereas large depolarizations decreased it. 6. The Ca(2+)-dependent K+ channel blocker apamin increased the duration and decreased the frequency of the oscillations. 7. We propose the following mechanism for the oscillations: (i) the membrane depolarizes slowly by a decrease of potassium conductance (gK), perhaps due to a gradual decrease of [Ca2+]i; (ii) the threshold for activation of Na+ channels (decreased by VTD) is reached, producing further depolarization and recruiting Ca2+ channels, and inactivation of both Ca2+ and VTD-poisoned Na+ channels is slow; and (iii) gK increases, aided by activation of Ca(2+)-dependent K+ channels by the increased [Ca2+]i, and the membrane repolarizes. The contribution of the Na+ channels seems essential for the generation of the oscillations. 8. Bovine chromaffin cells have the machinery required for [Ca2+]i oscillations even though the more physiological stimulus tested here (high K+, field electrical stimulation, nicotinic or muscarinic agonists) produced mainly non-oscillatory responses.

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Language(s): eng - English
 Dates: 1995-01-01
 Publication Status: Issued
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 Rev. Type: Peer
 Identifiers: DOI: 10.1113/jphysiol.1995.sp020496
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Title: The Journal of Physiology
Source Genre: Journal
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Publ. Info: Hoboken, New Jersey, Vereinigte Staaten : Wiley-Blackwell
Pages: - Volume / Issue: 482 (1) Sequence Number: - Start / End Page: 15 - 27 Identifier: ISSN: 0022-3751
CoNE: https://pure.mpg.de/cone/journals/resource/954925334693_2