The Coupled Reaction Catalyzed by the Enzymes Transketolase and Transaldolase
B.L. Horecker, Tina L. Cheng, S. Pontremoli
Abstract
B.L. Horecker, Tina L. Cheng, S. Pontremoli
Abstract
The formation of pentose phosphate from hexose monophosphate involves either the oxidative pathway from glucose 6phosphate through 6-phosphogluconate or the series of nonoxidative transfer reactions catalyzed by transketolase and transaldolase, in which sedoheptulose 7-phosphate is an intermediate (1). In mammalian tissues the nonoxidative pathway appears to play a major role (2-5), accounting for the synthesis of more than 50% of the ribose of ribonucleic acid and the acidsoluble nucleotides. Pentose phosphate synthesis from hexose monophosphate by the nonoxidative pathway has been presumed to involve the following sequence of reactions (1) :
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The formation of pentose phosphate from hexose monophosphate involves either the oxidative pathway from glucose 6phosphate through 6-phosphogluconate or the series of nonoxidative transfer reactions catalyzed by transketolase and transaldolase, in which sedoheptulose 7-phosphate is an intermediate (1). In mammalian tissues the nonoxidative pathway appears to play a major role (2-5), accounting for the synthesis of more than 50% of the ribose of ribonucleic acid and the acidsoluble nucleotides. Pentose phosphate synthesis from hexose monophosphate by the nonoxidative pathway has been presumed to involve the following sequence of reactions (1) :
Key concepts: Transaldolase, Transketolase, Pentose phosphate pathway, Pentose, Biochemistry, Ribose, Nucleotide, Chemistry