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Volumn 277, Issue 6, 2002, Pages 4056-4061
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Metabolic engineering in yeast demonstrates that S-adenosylmethionine controls flux through the methylenetetrahydrofolate reductase reaction in vivo
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Author keywords
[No Author keywords available]
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Indexed keywords
CELLS;
DNA;
GENES;
ORGANIC COMPOUNDS;
YEAST;
BIOGENESIS;
METABOLIC ENGINEERING;
ENZYMES;
5,10 METHYLENETETRAHYDROFOLATE REDUCTASE (FADH2);
GENE PRODUCT;
PROTEIN MET13;
PYRIDINE DERIVATIVE;
S ADENOSYLMETHIONINE;
UNCLASSIFIED DRUG;
AMINO TERMINAL SEQUENCE;
ARTICLE;
BIOGENESIS;
CARBOXY TERMINAL SEQUENCE;
CONTROLLED STUDY;
ENZYME ACTIVITY;
ENZYME INHIBITION;
ENZYME KINETICS;
ENZYME MECHANISM;
FEEDBACK SYSTEM;
GENETIC CODE;
IN VIVO STUDY;
METABOLIC ENGINEERING;
NONHUMAN;
NUCLEOTIDE SEQUENCE;
PRIORITY JOURNAL;
PROTEIN DEGRADATION;
PROTEIN EXPRESSION;
REGULATORY MECHANISM;
SACCHAROMYCES CEREVISIAE;
SEQUENCE ANALYSIS;
TRANSPORT KINETICS;
AMINO ACID SEQUENCE;
ARABIDOPSIS;
BASE SEQUENCE;
DNA PRIMERS;
FOLIC ACID;
GENETIC COMPLEMENTATION TEST;
KINETICS;
METHYLENETETRAHYDROFOLATE REDUCTASE (NADPH2);
MOLECULAR SEQUENCE DATA;
MUTATION;
NADP;
NUCLEAR MAGNETIC RESONANCE, BIOMOLECULAR;
OXIDOREDUCTASES ACTING ON CH-NH GROUP DONORS;
S-ADENOSYLMETHIONINE;
SACCHAROMYCES CEREVISIAE;
ARABIDOPSIS;
MAMMALIA;
SACCHAROMYCES;
SACCHAROMYCES CEREVISIAE;
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EID: 0037040192
PISSN: 00219258
EISSN: None
Source Type: Journal
DOI: 10.1074/jbc.M110651200 Document Type: Article |
Times cited : (45)
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References (33)
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