AknK is an L-2-deoxyfucosyltransferase in the biosynthesis of the anthracycline aclacinomycin A

被引:46
作者
Lu, W
Leimkuhler, C
Oberthür, M
Kahne, D
Walsh, CT
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/bi035945i
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 antitumor drug aclacinomycin A is a representative member of the anthracycline subgroup that contains a C-7-O-trisaccharide chain composed Of L-2-deoxysugars. The sugar portion of the molecule, which greatly affects its biological activity, is assembled by dedicated glycosyltransferases; however, these enzymes have not been well-studied. Here we report the heterologous expression and purification of one of these enzymes, AknK, as well as the preparation of dTDP-L-2-deoxysugar donors, dTDP-L-2-deoxyfucose and dTDP-L-daunosamine, and the monoglycosyl aglycone, rhodosaminyl aklavinone. Our experiments show that AknK catalyzes the addition of the second sugar to the chain, using TDP-L-2-deoxyfucose and rhodosaminyl aklavinone, to create the L-2-deoxyfucosyl-L-rhodosaminyl aklavinone. AknK also accepts an alternate dTDP-L-sugar, dTDP-L-daunosamine, and other monoglycosylated anthracyclines, including daunomycin, adriamycin, and idarubicin, to build alternate disaccharides on variant anthracycline backbones. Remarkably, AknK also catalyzes a tandem addition of a second L-2-deoxyfucosyl moiety, albeit with reduced activity, to the natural disaccharide chain to produce L-deoxyfucosyl-L-deoxyfucosyl-L-rhodosaminyl aklavinone, a variant of the natural aclacinomycin A. These results demonstrate that AknK may be a useful enzyme for the chemoenzymatic synthesis of anthracycline variants.
引用
收藏
页码:4548 / 4558
页数:11
相关论文
共 50 条
[41]   Structural basis for the interaction of antibiotics with the peptidyl transferase centre in eubacteria [J].
Schlünzen, F ;
Zarivach, R ;
Harms, J ;
Bashan, A ;
Tocilj, A ;
Albrecht, R ;
Yonath, A ;
Franceschi, F .
NATURE, 2001, 413 (6858) :814-821
[42]   DISSOCIATION OF ANTITUMOR POTENCY FROM ANTHRACYCLINE CARDIOTOXICITY IN A DOXORUBICIN ANALOG [J].
SIKIC, BI ;
EHSAN, MN ;
HARKER, WG ;
FRIEND, NF ;
BROWN, BW ;
NEWMAN, RA ;
HACKER, MP ;
ACTON, EM .
SCIENCE, 1985, 228 (4707) :1544-1546
[43]   The crystal structure of the complex between a disaccharide anthracycline and the DNA hexamer d(CGATCG) reveals two different binding sites involving two DNA duplexes [J].
Temperini, C ;
Messori, L ;
Orioli, P ;
Bugno, CD ;
Animati, F ;
Ughetto, G .
NUCLEIC ACIDS RESEARCH, 2003, 31 (05) :1464-1469
[44]   Nature's carbohydrate chemists: The enzymatic glycosylation of bioactive bacterial metabolites [J].
Thorson, JS ;
Hosted, TJ ;
Jiang, JQ ;
Biggins, JB ;
Ahlert, J .
CURRENT ORGANIC CHEMISTRY, 2001, 5 (02) :139-167
[45]   Rapid conversion of unprotected galactose analogs to their UDP-derivatives for use in the chemo-enzymatic synthesis of unnatural oligosaccharides [J].
Uchiyama, T ;
Hindsgaul, O .
JOURNAL OF CARBOHYDRATE CHEMISTRY, 1998, 17 (08) :1181-1190
[46]   Glycosyltransferase structure and mechanism [J].
Ünligil, UM ;
Rini, JM .
CURRENT OPINION IN STRUCTURAL BIOLOGY, 2000, 10 (05) :510-517
[47]   Antibiotic glycosyltransferases: Antibiotic maturation and prospects for reprogramming [J].
Walsh, C ;
Meyers, CLF ;
Losey, HC .
JOURNAL OF MEDICINAL CHEMISTRY, 2003, 46 (16) :3425-3436
[48]   The role of carbohydrates in biologically active natural products [J].
WeymouthWilson, AC .
NATURAL PRODUCT REPORTS, 1997, 14 (02) :99-110
[49]  
WIERNIK PH, 1992, BLOOD, V79, P313
[50]  
YLIHONKO K, 1999, Patent No. 995844