Metabolisms of Nucleosides in Bacteria
Takuo Sakai, Tatsurokuro Tochikura, Kôichi Ogata
Abstract
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Takuo Sakai, Tatsurokuro Tochikura, Kôichi Ogata
Abstract
Open-access reader
The bacterial enzymes which catalyze the nucleoside-N-ribosyl group transfer reaction between pyrimidine and purine nucleoside were studied.It was found that some bacteria had the intracellular enzyme system which catalyzes the nucleoside-N-ribosyl group transfer and could produce purine nucleosides from purine bases and pyrimidine nucleosides.Using the cell-free extract of Erwinia carotovora, inosine was isolated in fine crystals from uridine and hypoxanthine through the nucleoside-N-ribosyl transfer reaction.It seemed that the bacteria which can transfer the N-ribosyl group may be divided into two groups, based on the pH dependency of this reaction.This reaction was stimu lated by inorganic phosphate.Reactions were carried out at 37°C and pH 7.0 (Erwinia carotovora) and 9.0 (Corynebacterium sependonicum).
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The bacterial enzymes which catalyze the nucleoside-N-ribosyl group transfer reaction between pyrimidine and purine nucleoside were studied.It was found that some bacteria had the intracellular enzyme system which catalyzes the nucleoside-N-ribosyl group transfer and could produce purine nucleosides from purine bases and pyrimidine nucleosides.Using the cell-free extract of Erwinia carotovora, inosine was isolated in fine crystals from uridine and hypoxanthine through the nucleoside-N-ribosyl transfer reaction.It seemed that the bacteria which can transfer the N-ribosyl group may be divided into two groups, based on the pH dependency of this reaction.This reaction was stimu lated by inorganic phosphate.Reactions were carried out at 37°C and pH 7.0 (Erwinia carotovora) and 9.0 (Corynebacterium sependonicum).
Key concepts: Inosine, Chemistry, Nucleoside, Hypoxanthine, Purine, Pyrimidine, Bacteria, Purine nucleoside phosphorylase