Synthesis of GDP-mannose and mannosylglycerate from labeled mannose by genetically engineered Escherichia coli without loss of specific isotopic enrichment.

Appl Environ Microbiol

Instituto de Tecnologia Química e Biológica, Universidade Nova de Lisboa, 2780-156 Oeiras, Portugal.

Published: January 2003

AI Article Synopsis

  • The research describes an E. coli mutant developed to efficiently produce labeled 2-O-alpha-D-mannosyl-D-glycerate using two compatible plasmids.
  • The strain features a deletion in the manA gene that prevents the conversion of mannose-6-phosphate into fructose-6-phosphate, ensuring that the mannose is properly utilized in the synthesis pathway.
  • Key genes from two plasmids facilitate the conversion of GDP-mannose into the target compound, achieving a yield over 50% of the initial labeled mannose.

Article Abstract

We report the construction of an Escherichia coli mutant that harbors two compatible plasmids and that is able to synthesize labeled 2-O-alpha-D-mannosyl-D-glycerate from externally added labeled mannose without the loss of specific isotopic enrichment. The strain carries a deletion in the manA gene, encoding phosphomannose isomerase. This deletion prevents the formation of fructose-6-phosphate from mannose-6-phosphate after the uptake of mannose from the medium by mannose-specific enzyme II of the phosphotransferase system (PtsM). The strain also has a deletion of the cps gene cluster that prevents the synthesis of colanic acid, a mannose-containing polymer. Plasmid-encoded phosphomannomutase (cpsG) and mannose-1-phosphate guanylyltransferase (cpsB) ensure the formation of GDP-mannose. A second plasmid harbors msg, a gene from Rhodothermus marinus that encodes mannosylglycerate synthase, which catalyzes the formation of 2-O-alpha-D-mannosyl-D-glycerate from GDP-mannose and endogenous glycerate. The rate-limiting step in 2-O-alpha-D-mannosyl-D-glycerate formation is the transfer of GDP-mannose to glycerate. 2-O-alpha-D-mannosyl-D-glycerate can be released from cells by treatment with cold-water shock. The final product is formed in a yield exceeding 50% the initial quantity of labeled mannose, including loss during preparation and paper chromatography.

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http://www.ncbi.nlm.nih.gov/pmc/articles/PMC152461PMC
http://dx.doi.org/10.1128/AEM.69.1.233-240.2003DOI Listing

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