Tandem action of glycosyltransferases in the maturation of vancomycin and teicoplanin aglycones: Novel glycopeptides

被引:139
作者
Losey, HC
Peczuh, MW
Chen, Z
Eggert, US
Dong, SD
Pelczer, I
Kahne, D
Walsh, CT [1 ]
机构
[1] Harvard Univ, Sch Med, Dept Biol Chem & Mol Pharmacol, Boston, MA 02115 USA
[2] Princeton Univ, Dept Chem, Princeton, NJ 08544 USA
关键词
D O I
10.1021/bi010050w
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The glycopeptides vancomycin and teicoplanin are clinically important antibiotics. The carbohydrate portions of these molecules affect biological activity and there is great interest in developing efficient strategies to make carbohydrate derivatives. To this end, genes encoding four glycosyltransferases, GtfB, C, D, E, were subcloned from Amycolatopsis orientalis strains that produce chloroeremomycin (GtfB, C) or vancomycin (GtfD, E) into Escherichia coli. After expression and purification, each glycosyltransferase (Gtf) was characterized for activity either with the aglycones (GtfB, E) or the glucosylated derivatives (GtfC, D) of vancomycin and teicoplanin. GtfB efficiently glucosylates vancomycin aglycone using UDP-glucose as the glycosyl donor to form desvancosaminyl-vancomycin (vancomycin pseudoaglycone), with k(cat) of 17 min(-1), but has very low glucosylation activity, less than or equal to 0.3 min(-1), for an alternate substrate, teicoplanin aglycone. In contrast, GtfE is much more efficient at glucosylating both its natural substrate, vancomycin aglycone (k(cat) = 60 min(-1)), and an unnatural substrate, teicoplanin aglycone (k(cat) = 20 min(-1)). To test the addition of the 4-epi-vancosamine moiety by GtfC and GtfD, synthesis of UDP-beta -L-4-epi-vancosamine was undertaken. This NDP-sugar served as a substrate for both GtfC and GtfD in the presence of vancomycin pseudoaglycone (GtfC and GtfD) or the glucosylated teicoplanin scaffold, 7 (GtfD). The GtfC product was the 4-epi-vancosaminyl form of vancomycin. Remarkably, GtfD was able to utilize both an unnatural acceptor, 7, and an unnatural nucleotide sugar donor, UDP-4-epi-vancosamine, to synthesize a novel hybrid teicoplanin/vancomycin glycopeptide. These results establish the enzymatic activity of these four Gtfs, begin to probe substrate specificity, and illustrate how they can be utilized to make variant sugar forms of both the vancomycin and the teicoplanin class of glycopeptide antibiotics.
引用
收藏
页码:4745 / 4755
页数:11
相关论文
共 29 条
[1]   DIMERIZATION AND MEMBRANE ANCHORS IN EXTRACELLULAR TARGETING OF VANCOMYCIN GROUP ANTIBIOTICS [J].
BEAUREGARD, DA ;
WILLIAMS, DH ;
GWYNN, MN ;
KNOWLES, DJC .
ANTIMICROBIAL AGENTS AND CHEMOTHERAPY, 1995, 39 (03) :781-785
[2]   Deoxysugars in glycopeptide antibiotics: Enzymatic synthesis of TDP-L-epivancosamine in chloroeremomycin biosynthesis [J].
Chen, HW ;
Thomas, MG ;
Hubbard, BK ;
Losey, HC ;
Walsh, CT ;
Burkart, MD .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2000, 97 (22) :11942-11947
[3]   Binding of glycopeptide antibiotics to a model of a vancomycin-resistant bacterium [J].
Cooper, MA ;
Williams, DH .
CHEMISTRY & BIOLOGY, 1999, 6 (12) :891-899
[4]   Reductive alkylation of glycopeptide antibiotics: Synthesis and antibacterial activity [J].
Cooper, RDG ;
Snyder, NJ ;
Zweifel, MJ ;
Staszak, MA ;
Wilkie, SC ;
Nicas, TI ;
Mullen, DL ;
Butler, TF ;
Rodriguez, MJ ;
Huff, BE ;
Thompson, RC .
JOURNAL OF ANTIBIOTICS, 1996, 49 (06) :575-581
[5]   NMRPIPE - A MULTIDIMENSIONAL SPECTRAL PROCESSING SYSTEM BASED ON UNIX PIPES [J].
DELAGLIO, F ;
GRZESIEK, S ;
VUISTER, GW ;
ZHU, G ;
PFEIFER, J ;
BAX, A .
JOURNAL OF BIOMOLECULAR NMR, 1995, 6 (03) :277-293
[6]   Analysis of seven genes from the eryAl/-eryK region of the erythromycin biosynthetic gene cluster in Saccharopolyspora erythraea [J].
Gaisser, S ;
Bohm, GA ;
Cortes, J ;
Leadlay, PF .
MOLECULAR & GENERAL GENETICS, 1997, 256 (03) :239-251
[7]   Vancomycin derivatives that inhibit peptidoglycan biosynthesis without binding D-Ala-D-Ala [J].
Ge, M ;
Chen, Z ;
Onishi, HR ;
Kohler, J ;
Silver, LL ;
Kerns, R ;
Fukuzawa, S ;
Thompson, C ;
Kahne, D .
SCIENCE, 1999, 284 (5413) :507-511
[8]   CALCULATION OF PROTEIN EXTINCTION COEFFICIENTS FROM AMINO-ACID SEQUENCE DATA [J].
GILL, SC ;
VONHIPPEL, PH .
ANALYTICAL BIOCHEMISTRY, 1989, 182 (02) :319-326
[9]   NMR VIEW - A COMPUTER-PROGRAM FOR THE VISUALIZATION AND ANALYSIS OF NMR DATA [J].
JOHNSON, BA ;
BLEVINS, RA .
JOURNAL OF BIOMOLECULAR NMR, 1994, 4 (05) :603-614
[10]   Manipulation of modular polyketide syntheses [J].
Katz, L .
CHEMICAL REVIEWS, 1997, 97 (07) :2557-2575