Functional characterization of Musca glutamate- and GABA-gated chloride channels expressed independently and coexpressed in Xenopus oocytes.

scientific article published in December 2006

Functional characterization of Musca glutamate- and GABA-gated chloride channels expressed independently and coexpressed in Xenopus oocytes. is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1111/J.1365-2583.2006.00680.X
P698PubMed publication ID17201770

P50authorMakoto IharaQ39048738
P2093author name stringShibata Y
Wada M
Matsuda K
Eguchi Y
Fushiki S
Niwa H
Hamasaki Y
Sugama H
Ozoe Y
Ozoe F
Ochi E
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Agonist pharmacology of two Drosophila GABA receptor splice variantsQ41983842
Actions of the insecticide fipronil, on dieldrin‐sensitive and ‐resistant GABA receptors of Drosophila melanogasterQ42708156
Ivermectin and nodulisporic acid receptors in Drosophila melanogaster contain both gamma-aminobutyric acid-gated Rdl and glutamate-gated GluCl alpha chloride channel subunitsQ43992726
Differential actions of fipronil and dieldrin insecticides on GABA-gated chloride channels in cockroach neuronsQ44453357
Fipronil modulation of glutamate-induced chloride currents in cockroach thoracic ganglion neuronsQ44668832
Fipronil is a potent open channel blocker of glutamate-activated chloride channels in cockroach neuronsQ44795526
Unusual functional properties of homo- and heteromultimeric histamine-gated chloride channels of Drosophila melanogaster: spontaneous currents and dual gating by GABA and histamineQ45142525
Resistance to fipronil in Drosophila simulans: influence of two point mutations in the RDL GABA receptor subunit.Q45301913
An amino acid substitution in the pore region of a glutamate-gated chloride channel enables the coupling of ligand binding to channel gating.Q50761247
Acetylcholine receptor channel imaged in the open stateQ59067615
P433issue6
P304page(s)773-783
P577publication date2006-12-01
P1433published inInsect Molecular BiologyQ4041416
P1476titleFunctional characterization of Musca glutamate- and GABA-gated chloride channels expressed independently and coexpressed in Xenopus oocytes.
P478volume15

Reverse relations

cites work (P2860)
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