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Volumn 531, Issue 1, 2001, Pages 37-50
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The K+ channel signature sequence of murine Kir2.1: Mutations that affect microscopic gating but not ionic selectivity
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Author keywords
[No Author keywords available]
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Indexed keywords
ALANINE;
AMINO ACID DERIVATIVE;
DIMER;
LEUCINE;
METHIONINE;
MONOMER;
PHENYLALANINE;
POLYAMINE;
POTASSIUM CHANNEL;
POTASSIUM ION;
RUBIDIUM ION;
SODIUM ION;
TYROSINE;
VALINE;
INWARDLY RECTIFYING POTASSIUM CHANNEL SUBUNIT KIR2.1;
AMINO ACID SEQUENCE;
ANIMAL CELL;
ARTICLE;
CELL MEMBRANE POTENTIAL;
CHANNEL GATING;
CHO CELL;
CONDUCTANCE;
CONTROLLED STUDY;
COVALENT BOND;
DIFFUSION COEFFICIENT;
HYDROGEN BOND;
HYPERPOLARIZATION;
ION CURRENT;
ION TRANSPORT;
MOLECULAR DYNAMICS;
MUTATION;
NONHUMAN;
PERMEABILITY;
POTASSIUM TRANSPORT;
PRIORITY JOURNAL;
SEQUENCE ANALYSIS;
SODIUM TRANSPORT;
STEADY STATE;
AMINO ACID SUBSTITUTION;
CHORD CONDUCTANCE;
ELECTRICAL POTENTIAL PARAMETERS;
FEMALE;
GENE MUTATION;
IONIC SELECTIVITY;
MEMBRANE POTENTIAL;
METABOLIC PARAMETERS;
POLYAMINE METABOLISM;
WILD TYPE;
ALGORITHMS;
AMINO ACID SEQUENCE;
AMINO ACID SUBSTITUTION;
ANIMALS;
ELECTROPHYSIOLOGY;
HYDROGEN BONDING;
ION CHANNEL GATING;
KINETICS;
MOLECULAR SEQUENCE DATA;
MUTATION;
PATCH-CLAMP TECHNIQUES;
POTASSIUM;
POTASSIUM CHANNELS;
POTASSIUM CHANNELS, INWARDLY RECTIFYING;
RATS;
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EID: 0035865255
PISSN: 00223751
EISSN: None
Source Type: Journal
DOI: 10.1111/j.1469-7793.2001.0037j.x Document Type: Article |
Times cited : (30)
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References (48)
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