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Volumn 51, Issue 3, 2008, Pages 119-127
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Alcalase®-catalysed synthesis of the precursor tetrapeptide N-benzoylarginylglycylaspartylserinamide (Bz-RGDS-NH2) of the cell-adhesion peptide arginylglycylaspartylserine (RGDS)
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Author keywords
Alcalase catalysed peptide synthesis; Arginylglycylaspartylserine (RGDS); Cell adhesion peptide; N benzoylarginylglycylaspartylserinamide (Bz RGDS NH2); Organic solvents
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Indexed keywords
ALCALASE;
ALKALINE PROTEASE;
ARGINYLGLYCYLASPARTYLSERINE (RGDS);
ASPARTIC ACIDS;
BUFFER SYSTEM;
CHEMICAL METHOD;
ENZYMATIC METHODS;
ETHYL ESTERS;
GRAM SCALE;
KINETIC CONTROL;
L-ARGININE;
MOLAR RATIO;
N-BENZOYLARGINYLGLYCYLASPARTYLSERINAMIDE (BZ-RGDS-NH2);
NOVEL ROUTE;
OPTIMUM REACTION CONDITIONS;
ORGANIC MEDIA;
PEPTIDE PRODUCTS;
PH VALUE;
REACTION TEMPERATURE;
SUBSTRATE SPECIFICITY;
TETRAPEPTIDE;
TRIPEPTIDE;
WATER-MISCIBLE ORGANIC SOLVENTS;
ADHESION;
AMINO ACIDS;
CATALYSIS;
CELL MEMBRANES;
ESTERS;
ORGANIC ACIDS;
ORGANIC SOLVENTS;
PH EFFECTS;
SODIUM;
SUBSTRATES;
SYNTHESIS (CHEMICAL);
WATER CONTENT;
AMINES;
ARGINYLGLYCYLASPARTYLSERINE;
ASPARTIC ACID;
BUFFER;
N BENZOYLARGINYLGLYCYLASPARTYLSERINAMIDE;
SERINE;
SUBTILISIN;
TETRAPEPTIDE;
UNCLASSIFIED DRUG;
ARGINYL GLYCYL ASPARTYL SERINE;
ARGINYL-GLYCYL-ASPARTYL-SERINE;
N-BENZOYLARGINYLGLYCYLASPARTYLSERINAMIDE;
OLIGOPEPTIDE;
SOLVENT;
WATER;
ACETYLATION;
ARTICLE;
CATALYSIS;
CHEMICAL REACTION KINETICS;
CONTROLLED STUDY;
ENZYME ACTIVITY;
ENZYME SPECIFICITY;
ENZYME SUBSTRATE;
PEPTIDE SYNTHESIS;
PH;
PROCESS OPTIMIZATION;
PROTEIN HYDROLYSIS;
REACTION TIME;
SOLVENT EFFECT;
TEMPERATURE;
WATER CONTENT;
CELL ADHESION;
CHEMISTRY;
IMMUNOLOGY;
ISOLATION AND PURIFICATION;
KINETICS;
METABOLISM;
SOLUBILITY;
SYNTHESIS;
TIME;
CATALYSIS;
CELL ADHESION;
HYDROGEN-ION CONCENTRATION;
KINETICS;
OLIGOPEPTIDES;
SOLUBILITY;
SOLVENTS;
SUBSTRATE SPECIFICITY;
SUBTILISINS;
TEMPERATURE;
TIME FACTORS;
WATER;
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EID: 58149288663
PISSN: 08854513
EISSN: None
Source Type: Journal
DOI: 10.1042/BA20070123 Document Type: Article |
Times cited : (1)
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References (34)
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