Identification of guanosine diphosphate derivatives of d-xylose, d-glucose and d-galactose in mature strawberry leaves

Author:

Selvendran R. R.1,Isherwood F. A.1

Affiliation:

1. Agricultural Research Council, Food Research Institute, Low Temperature Research Station, Cambridge

Abstract

The nucleotides from a trichloroacetic acid extract of mature strawberry leaves were separated into ten main fractions by chromatography on a Dowex 1 (formate form) column with ammonium formate as the eluting agent. One of these fractions, which was suspected to contain not only ADP but also GDP-sugars, was separated into a number of subfractions by further chromatography on a Dowex 1 (formate form) column with the formic acid system as the eluting agent. One of these subfractions was identified from its ultraviolet spectra, from its position on the two ion-exchange columns and by thin-layer chromatography as a GDP-sugar. Mild acid hydrolysis gave GDP and a mixture of sugars. The sugars, after a preliminary separation on a paper chromatogram, were identified by an isotope-dilution method. The sugars were condensed with sodium [14C]cyanide, the [14C]nitriles were hydrolysed and one of the epimeric acids was isolated, either as lactone or amide, by co-crystallization with a non-radioactive carrier. This method distinguishes between enantiomorphic sugars. d-Mannose, d-xylose, d-glucose and d-galactose were present in the proportions 40:10:1:1 respectively. The total amount of the GDP-sugars was approx. 0·1μmole/100g. of fresh leaves.

Publisher

Portland Press Ltd.

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1. 2 Biosynthesis and biodegradation of hemicelluloses;Microbial Pentose Utilization - Current Applications in Biotechnology;1995

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3. Nucleotide Sugars;Methods in Plant Biochemistry;1990

4. The synthesis of guanosine 5'-diphosphate D-glucose by enzyme extracts of mung beans (Phaseolus aureus ) and other higher plants;FEBS Letters;1985-04-08

5. The Biosynthesis of Plant Cell Wall Polysaccharides;Biosynthesis and Biodegradation of Wood Components;1985

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