Biophysical properties of scorpion alpha-toxin-sensitive background sodium channel contributing to the pacemaker activity in insect neurosecretory cells (DUM neurons).

scientific article published in April 1999

Biophysical properties of scorpion alpha-toxin-sensitive background sodium channel contributing to the pacemaker activity in insect neurosecretory cells (DUM neurons). is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1046/J.1460-9568.1999.00554.X
P698PubMed publication ID10103139

P2093author name stringRochat H
Zlotkin E
Grolleau F
Lapied B
Pelhate M
Stankiewicz M
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Nicotine increases [Ca2+]i and regulates electrical activity in insect neurosecretory cells (DUM neurons) via an acetylcholine receptor with 'mixed' nicotinic-muscarinic pharmacology.Q52551915
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P433issue4
P407language of work or nameEnglishQ1860
P304page(s)1449-1460
P577publication date1999-04-01
P1433published inEuropean Journal of NeuroscienceQ5412733
P1476titleBiophysical properties of scorpion alpha-toxin-sensitive background sodium channel contributing to the pacemaker activity in insect neurosecretory cells (DUM neurons).
P478volume11

Reverse relations

cites work (P2860)
Q40662798Contryphan-Vn: a modulator of Ca2+-dependent K+ channels
Q52587920Digger wasp versus cricket: mechanisms underlying the total paralysis caused by the predator's venom.
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Q50114307Indirect activation of neuronal noncapacitative Ca2+ entry is the final step involved in the neurotoxic effect of Tityus serrulatus scorpion beta-toxin
Q24674128Indoxacarb, an oxadiazine insecticide, blocks insect neuronal sodium channels
Q36700565Insect sodium channels and insecticide resistance
Q38135287Mechanism of action of sodium channel blocker insecticides (SCBIs) on insect sodium channels
Q34667346Molecular and functional characterization of voltage-gated sodium channel variants from Drosophila melanogaster
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Q43999208The effect of intensity and duration on the light-induced sodium and potassium currents in the Hermissenda type B photoreceptor.
Q55280224Voltage-Gated Sodium Channels as Insecticide Targets.

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