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Volumn 276, Issue 21, 2001, Pages 18423-18429
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Functional Geometry of the Permeation Pathway of Ca2+-activated Cl- Channels Inferred from Analysis of Voltage-dependent Block
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Author keywords
[No Author keywords available]
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Indexed keywords
CARBOXYLIC ACIDS;
CHEMICAL ACTIVATION;
DRUG DOSAGE;
MECHANICAL PERMEABILITY;
VOLTAGE MEASUREMENT;
BIOCHEMICAL PATHWAYS;
BIOCHEMISTRY;
4,4' DIISOTHIOCYANATOSTILBENE 2,2' DISULFONIC ACID;
9 ANTHROIC ACID;
CHLORIDE CHANNEL;
EFENAMIC ACID;
NIFLUMIC ACID;
CALCIUM;
ANIMAL CELL;
ARTICLE;
BILAYER MEMBRANE;
CALCIUM ACTIVATED CHLORIDE CHANNEL;
CHANNEL GATING;
ELECTRIC POTENTIAL;
EQUILIBRIUM CONSTANT;
EXTRACELLULAR SPACE;
FEMALE;
GEOMETRY;
HYDROPHOBICITY;
MEMBRANE PERMEABILITY;
MOLECULAR MODEL;
NONHUMAN;
OOCYTE;
PRIORITY JOURNAL;
XENOPUS LAEVIS;
ANIMAL;
CHEMICAL STRUCTURE;
CHEMISTRY;
PATCH CLAMP;
PHYSIOLOGY;
XENOPUS;
ANIMALIA;
XENOPUS LAEVIS;
ANIMALS;
CALCIUM;
CHLORIDE CHANNELS;
ION CHANNEL GATING;
MODELS, MOLECULAR;
PATCH-CLAMP TECHNIQUES;
XENOPUS;
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EID: 0035947676
PISSN: 00219258
EISSN: None
Source Type: Journal
DOI: 10.1074/jbc.M101264200 Document Type: Article |
Times cited : (60)
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References (37)
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