Enzymic ribonucleoside reduction at the non-phosphorylated level in Acetabularia
Egon J. De Groot, Hans‐Georg Schweiger
Abstract
Egon J. De Groot, Hans‐Georg Schweiger
Abstract
The occurrence of an enzyme that catalyses the conversion of cytidine into deoxycytidine was demonstrated in homogenates of Acetabularia. Cytidine was identified as the substrate by comparing cytidine, cytidine 5'-monophosphate, cytidine 5'-diphosphate and cytidine 5'-triphosphate as potential substrates. Experiments with ATP analogues whose inhibitory effect on kinase reactions is well established, supplied evidence that the nucleoside is reduced without a phosphorylation step before the reduction. Further evidence in this line came from incubations with cytidine in the presence of phosphatase and from trap-type experiments in which the effects of excess non-labelled cytidine 5'-phosphate and deoxycytidine, respectively, on the formation of deoxycytidine phosphates from cytidine were studied.
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The occurrence of an enzyme that catalyses the conversion of cytidine into deoxycytidine was demonstrated in homogenates of Acetabularia. Cytidine was identified as the substrate by comparing cytidine, cytidine 5'-monophosphate, cytidine 5'-diphosphate and cytidine 5'-triphosphate as potential substrates. Experiments with ATP analogues whose inhibitory effect on kinase reactions is well established, supplied evidence that the nucleoside is reduced without a phosphorylation step before the reduction. Further evidence in this line came from incubations with cytidine in the presence of phosphatase and from trap-type experiments in which the effects of excess non-labelled cytidine 5'-phosphate and deoxycytidine, respectively, on the formation of deoxycytidine phosphates from cytidine were studied.
Key concepts: Cytidine, Deoxycytidine, Biology, Ribonucleoside, Biochemistry, Cytidine deaminase, Nucleotide salvage, Nucleoside