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Volumn 1513, Issue 2, 2001, Pages 95-121
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Slippage and uncoupling in P-type cation pumps; implications for energy transduction mechanisms and regulation of metabolism
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Author keywords
Channel; Heat production; Occluded cation; P type ATPase; Partial denaturation; Slippage; Uncoupling; Variable stoichiometry
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Indexed keywords
ADENOSINE TRIPHOSPHATASE (CALCIUM);
ADENOSINE TRIPHOSPHATASE (POTASSIUM SODIUM);
CALCIUM CHANNEL P TYPE;
CALCIUM ION;
CATION;
MEMBRANE PHOSPHOLIPID;
POTASSIUM ION;
ACTIVE TRANSPORT;
AGING;
BINDING SITE;
CALCIUM BINDING;
CATALYSIS;
CELL MEMBRANE;
ENERGY TRANSFER;
HEART FAILURE;
HYDROLYSIS;
ION TRANSPORT;
ISCHEMIA;
ISOMERISM;
MEMBRANE;
METABOLIC RATE;
METABOLIC REGULATION;
NONHUMAN;
POTASSIUM TRANSPORT;
PRIORITY JOURNAL;
REVIEW;
SITE DIRECTED MUTAGENESIS;
STOICHIOMETRY;
THERMOGENESIS;
YEAST;
ADENOSINE TRIPHOSPHATASES;
AGING;
ANIMALS;
BINDING SITES;
BIOLOGICAL TRANSPORT, ACTIVE;
CALCIUM;
CALCIUM-TRANSPORTING ATPASES;
CATIONS, DIVALENT;
CELL MEMBRANE;
ENERGY METABOLISM;
ERYTHROCYTES;
HUMANS;
MEMBRANE LIPIDS;
MODELS, CHEMICAL;
MUSCLE, SKELETAL;
NA(+)-K(+)-EXCHANGING ATPASE;
PLANTS;
PROTON-TRANSLOCATING ATPASES;
THERMODYNAMICS;
YEASTS;
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EID: 0035817358
PISSN: 00052736
EISSN: None
Source Type: Journal
DOI: 10.1016/S0005-2736(01)00356-X Document Type: Review |
Times cited : (44)
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References (223)
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