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Volumn 285, Issue 37, 2010, Pages 28565-28576
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Toward a quantitative modeling of the synthesis of the pectate lyases, essential virulence factors in Dickeya dadantii
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Author keywords
[No Author keywords available]
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Indexed keywords
BACTERIOLOGY;
CATALYSTS;
CYTOLOGY;
DIFFERENTIAL EQUATIONS;
ENZYMES;
EQUATIONS OF STATE;
EVOLUTIONARY ALGORITHMS;
GENE EXPRESSION;
MATHEMATICAL MODELS;
OLIGOMERS;
BACTERIAL CYTOPLASM;
BACTERIAL GROWTH;
BISTABLES;
DIFFUSION PROCESS;
DYNAMIC MATHEMATICAL MODEL;
EVOLUTIONARY STRATEGIES;
EXTRACELLULAR MEDIUM;
GENETIC REGULATION;
GROWTH CONDITIONS;
METABOLIC DEGRADATION;
MODEL EQUATIONS;
MODEL PREDICTION;
NONLINEAR DIFFERENTIAL EQUATION;
PECTIN COMPOUNDS;
QUANTITATIVE MODELING;
QUASI-STATIONARY STATE;
STEADY STATE;
TIME COURSE;
TIME VARYING;
UNKNOWN PARAMETERS;
VIRULENCE FACTORS;
WORK FOCUS;
NONLINEAR EQUATIONS;
OLIGOMER;
PECTATE LYASE;
PECTIN;
2-KETO-3-DEOXYGLUCONATE;
BACTERIAL RNA;
GLUCONIC ACID;
MESSENGER RNA;
POLYSACCHARIDE LYASE;
VIRULENCE FACTOR;
ARTICLE;
BACTERIAL STRAIN;
CATABOLISM;
CONTROLLED STUDY;
CYTOPLASM;
DICKEYA DADANTII;
GRAM NEGATIVE BACTERIUM;
NONHUMAN;
PRIORITY JOURNAL;
PROTEIN CLEAVAGE;
PROTEIN DEGRADATION;
PROTEIN PHOSPHORYLATION;
QUANTITATIVE ANALYSIS;
REVERSE TRANSCRIPTION POLYMERASE CHAIN REACTION;
RNA ISOLATION;
TRANSCRIPTION REGULATION;
BIOLOGICAL MODEL;
BIOSYNTHESIS;
ENTEROBACTERIACEAE;
ENZYMOLOGY;
GENE EXPRESSION REGULATION;
GENETICS;
METABOLISM;
MICROBIOLOGY;
PHYSIOLOGY;
PLANT;
PLANT DISEASE;
BACTERIA (MICROORGANISMS);
DICKEYA DADANTII;
ENTEROBACTERIACEAE;
GENE EXPRESSION REGULATION, BACTERIAL;
GENE EXPRESSION REGULATION, ENZYMOLOGIC;
GLUCONATES;
MODELS, BIOLOGICAL;
PECTINS;
PLANT DISEASES;
PLANTS;
POLYSACCHARIDE-LYASES;
RNA, BACTERIAL;
RNA, MESSENGER;
VIRULENCE FACTORS;
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EID: 77956522551
PISSN: 00219258
EISSN: 1083351X
Source Type: Journal
DOI: 10.1074/jbc.M110.114710 Document Type: Article |
Times cited : (33)
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References (33)
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