Title of article :
Engineering Biosynthetic Pathways for Deoxysugars: Branched-Chain Sugar Pathways and Derivatives from the Antitumor Tetracenomycin Original Research Article
Author/Authors :
Felipe Lomb?، نويسنده , , Miranda Gibson، نويسنده , , Lisa Greenwell، نويسنده , , Alfredo F. Bra?a، نويسنده , , Jürgen Rohr، نويسنده , , José A. Salas، نويسنده , , Carmen Méndez، نويسنده ,
Issue Information :
ماهنامه با شماره پیاپی سال 2004
Abstract :
Sugar biosynthesis cassette genes have been used to construct plasmids directing the biosynthesis of branched-chain deoxysugars: pFL942 (NDP-L-mycarose), pFL947 (NDP-4-deacetyl-L-chromose B), and pFL946/pFL954 (NDP-2,3,4-tridemethyl-L-nogalose). Expression of pFL942 and pFL947 in S. lividans 16F4, which harbors genes for elloramycinone biosynthesis and the flexible ElmGT glycosyltransferase of the elloramycin biosynthetic pathway, led to the formation of two compounds: 8-α-L-mycarosyl-elloramycinone and 8-demethyl-8-(4-deacetyl)-α-L-chromosyl-tetracenomycin C, respectively. Expression of pFL946 or pFL954 failed to produce detectable amounts of a novel glycosylated tetracenomycin derivative. Formation of these two compounds represents examples of the sugar cosubstrate flexibility of the ElmGT glycosyltransferase. The use of these cassette plasmids also provided insights into the substrate flexibility of deoxysugar biosynthesis enzymes as the C-methyltransferases EryBIII and MtmC, the epimerases OleL and EryBVII, and the 4-ketoreductases EryBIV and OleU.
Journal title :
Chemistry and Biology
Journal title :
Chemistry and Biology