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Galactitol catabolism in Sinorhizobium meliloti is dependent on a chromosomally encoded sorbitol dehydrogenase and a pSymB-encoded operon necessary for tagatose catabolism

Mol Genet Genomics. 2019; 
Kohlmeier MG, White CE, Fowler JE, Finan TM, Oresnik IJ.
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Gene Synthesis … Codon optimization of the E. coli gatZ was carried out by GenScript (Piscataway, NJ, USA) and supplied as an insert on pUC57, which was subsequently used as template to generate pMK45. All constructs were confirmed by nucleotide sequencing … Get A Quote

摘要

The legume endosymbiont Sinorhizobium meliloti can utilize a broad range of carbon compounds to support its growth. The linear, six-carbon polyol galactitol is abundant in vascular plants and is metabolized in S. meliloti by the contribution of two loci SMb21372-SMb21377 and SMc01495-SMc01503 which are found on pSymB and the chromosome, respectively. The data suggest that several transport systems, including the chromosomal ATP-binding cassette (ABC) transporter smoEFGK, contribute to the uptake of galactitol, while the adjacent gene smoS encodes a protein for oxidation of galactitol into tagatose. Subsequently, genes SMb21374 and SMb21373, encode proteins that phosphorylate and epimerize tagatose into fructose... More

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