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Volumn 352, Issue , 2012, Pages 137-142
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De novo biosynthesis of starch chains without a primer and the mechanism for its biosynthesis by potato starch-synthase
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Author keywords
Covalent amylose and d glucose enzyme intermediates; De novo biosynthesis; Pulse and chase reactions; Starch synthase; Synthesis from the reducing end; Two catalytic site insertion mechanism
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Indexed keywords
ACID HYDROLYSIS;
ADP-GLC;
AFTER-TREATMENT;
AMYLOSE CHAINS;
COVALENT AMYLOSE AND D-GLUCOSE ENZYME INTERMEDIATES;
D-GLUCOSE;
GLUCOAMYLASE;
GLUCOPYRANOSE;
IMMOBILIZED ENZYME;
INSERTION MECHANISM;
NUMBER AVERAGE MOLECULAR WEIGHT;
PULSE AND CHASE REACTIONS;
PULSE REACTIONS;
SPECIFIC ACTIVITY;
STARCH CHAIN;
STARCH-SYNTHASE;
ACETONE;
BIOCHEMISTRY;
BIOSYNTHESIS;
ENZYMES;
GLUCOSE;
STARCH;
ADENOSINE DIPHOSPHATE GLUCOSE;
AMYLASE;
AMYLOSE;
CARBOHYDRATE DERIVATIVE;
CARBON 14;
DEXTRO GLUCOPYRANOSE;
GLUCAN 1,4 ALPHA GLUCOSIDASE;
POTATO STARCH;
SORBITOL;
STARCH;
STARCH SYNTHASE;
UNCLASSIFIED DRUG;
ARTICLE;
BIOSYNTHESIS;
CATALYSIS;
ENZYME ACTIVE SITE;
ENZYME IMMOBILIZATION;
HYDROLYSIS;
MOLECULAR WEIGHT;
POLYMERIZATION;
PRIORITY JOURNAL;
SOLUBILITY;
ACETYLGLUCOSAMINE;
BIOCATALYSIS;
CATALYTIC DOMAIN;
SOLANUM TUBEROSUM;
SOLUBILITY;
STARCH;
STARCH SYNTHASE;
SOLANUM TUBEROSUM;
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EID: 84859496519
PISSN: 00086215
EISSN: 1873426X
Source Type: Journal
DOI: 10.1016/j.carres.2011.11.024 Document Type: Article |
Times cited : (7)
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References (13)
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