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Volumn 573, Issue 2, 2006, Pages 286-
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The maxi K+ channel of human myometrium reveals a split personality
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Author keywords
[No Author keywords available]
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Indexed keywords
CALCIUM ION;
POTASSIUM CHANNEL;
PROTEINASE;
CAFFEINE;
LARGE CONDUCTANCE CALCIUM ACTIVATED POTASSIUM CHANNEL;
VOLTAGE GATED CALCIUM CHANNEL;
ALTERNATIVE RNA SPLICING;
AMINO TERMINAL SEQUENCE;
ARTICLE;
CARBOXY TERMINAL SEQUENCE;
CELL MEMBRANE;
ENDOPLASMIC RETICULUM;
GENETIC DISORDER;
HUMAN;
MULTIGENE FAMILY;
MYOMETRIUM;
NEGATIVE FEEDBACK;
NERVE CELL;
NERVE ENDING;
NEUROLOGIC DISEASE;
NEUROTRANSMISSION;
POTASSIUM CONDUCTANCE;
PRIORITY JOURNAL;
PROTEIN DEPHOSPHORYLATION;
PROTEIN PHOSPHORYLATION;
REGULATORY MECHANISM;
REPOLARIZATION;
SIGNAL TRANSDUCTION;
SMOOTH MUSCLE CONTRACTION;
AMINO ACID SEQUENCE;
CALCIUM CELL LEVEL;
CALCIUM TRANSPORT;
CELL CULTURE;
CYTOPLASM;
GENE;
GENE INACTIVATION;
HEK293 CELL LINE;
HSLO GENE;
MYRISTYLATION;
NEUROTRANSMITTER RELEASE;
NOTE;
PROTEIN CLEAVAGE;
PROTEIN DEGRADATION;
PROTEIN EXPRESSION;
PROTEIN FUNCTION;
PROTEIN LOCALIZATION;
PROTEIN STRUCTURE;
FEMALE;
HUMANS;
LARGE-CONDUCTANCE CALCIUM-ACTIVATED POTASSIUM CHANNELS;
MYOMETRIUM;
PROTEIN SUBUNITS;
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EID: 33745052419
PISSN: 00223751
EISSN: 14697793
Source Type: Journal
DOI: 10.1113/jphysiol.2006.109629 Document Type: Article |
Times cited : (4)
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References (5)
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