Function of glycosyltransferase genes involved in urdamycin A biosynthesis

被引:79
作者
Trefzer, A
Hoffmeister, D
Künzel, E
Stockert, S
Weitnauer, G
Westrich, L
Rix, U
Fuchser, J
Bindseil, KU
Rohr, J
Bechthold, A
机构
[1] Univ Tubingen, Inst Pharmazeut, D-72076 Tubingen, Germany
[2] Med Univ S Carolina, Dept Pharmaceut Sci, Charleston, SC 29425 USA
[3] AnalytiCon AG, Biotechnol Pharm, D-14473 Potsdam, Germany
来源
CHEMISTRY & BIOLOGY | 2000年 / 7卷 / 02期
关键词
angucycline antibiotics; deoxysugar; glycosyltransferase; urdamycin;
D O I
10.1016/S1074-5521(00)00079-X
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
Background: Urdamycin A, the principle product of Streptomyces fradiae Tu2717, is an angucycline-type antibiotic. The polyketide-derived aglycone moiety is glycosylated at two positions, but only limited information is available about glycosyltransferases involved in urdamycin biosynthesis. Results: To determine the function of three glycosyltransferase genes in the urdamycin biosynthetic gene cluster, we have carried out gene inactivation and expression experiments. Inactivation of urdGT1a resulted in the predominant accumulation of urdamycin B. A mutant lacking urdGT1b and urdGT1c mainly produced compound 100-2. When urdGT1c was expressed in the urdGT1b/urdGT1c double mutant, urdamycin G and urdamycin A were detected. The mutant lacking all three genes mainly accumulated aquayamycin and urdamycinone B. Expression of urdGT1c in the triple mutant led to the formation of compound 100-1, whereas expression of urdGT1a resulted in the formation of compound 100-2. Co-expression of urdGT1b and urdGT1c resulted in the production of 12b-derhodinosyl-urdamycin A, and co-expression of urdGT1a, urdGT1c and urdGT1c resulted in the formation of urdamycin A. Conclusions: Analysis of glycosyltransferase genes of the urdamycin biosynthetic gene cluster led to an unambiguous assignment of each glycosyltransferase to a certain biosynthetic saccharide attachment step.
引用
收藏
页码:133 / 142
页数:10
相关论文
共 41 条
[1]   IDENTIFICATION OF STREPTOMYCES-VIOLACEORUBER TU22 GENES INVOLVED IN THE BIOSYNTHESIS OF GRANATICIN [J].
BECHTHOLD, A ;
SOHNG, JK ;
SMITH, TM ;
CHU, X ;
FLOSS, HG .
MOLECULAR & GENERAL GENETICS, 1995, 248 (05) :610-620
[2]  
BECHTHOLD A, 1999, NEW ASPECTS BIOORGAN
[3]   THE MESSENGER-RNA FOR THE 23S RIBOSOMAL-RNA METHYLASE ENCODED BY THE ERME GENE OF SACCHAROPOLYSPORA-ERYTHRAEA IS TRANSLATED IN THE ABSENCE OF A CONVENTIONAL RIBOSOME-BINDING SITE [J].
BIBB, MJ ;
WHITE, J ;
WARD, JM ;
JANSSEN, GR .
MOLECULAR MICROBIOLOGY, 1994, 14 (03) :533-545
[4]   PLASMID CLONING VECTORS FOR THE CONJUGAL TRANSFER OF DNA FROM ESCHERICHIA-COLI TO STREPTOMYCES SPP [J].
BIERMAN, M ;
LOGAN, R ;
OBRIEN, K ;
SENO, ET ;
RAO, RN ;
SCHONER, BE .
GENE, 1992, 116 (01) :43-49
[5]   TOTAL SYNTHESIS OF THE ANGUCYCLINE ANTIBIOTICS URDAMYCINONE-B AND 104-2 VIA A COMMON SYNTHETIC INTERMEDIATE [J].
BOYD, VA ;
SULIKOWSKI, GA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1995, 117 (32) :8472-8473
[6]   CLONING AND CHARACTERIZATION OF A POLYKETIDE SYNTHASE GENE FROM STREPTOMYCES-FRADIAE TU2717, WHICH CARRIES THE GENES FOR BIOSYNTHESIS OF THE ANGUCYCLINE ANTIBIOTIC URDAMYCIN-A AND A GENE PROBABLY INVOLVED IN ITS OXYGENATION [J].
DECKER, H ;
HAAG, S .
JOURNAL OF BACTERIOLOGY, 1995, 177 (21) :6126-6136
[7]   A general approach for cloning and characterizing dNDP-glucose dehydratase genes from actinomycetes [J].
Decker, H ;
Gaisser, S ;
Pelzer, S ;
Schneider, P ;
Westrich, L ;
Wohlleben, W ;
Bechthold, A .
FEMS MICROBIOLOGY LETTERS, 1996, 141 (2-3) :195-201
[8]   METABOLIC PRODUCTS OF MICROORGANISMS .234. URDAMYCINS, NEW ANGUCYCLINE ANTIBIOTICS FROM STREPTOMYCES-FRADIAE .1. ISOLATION, CHARACTERIZATION AND BIOLOGICAL PROPERTIES [J].
DRAUTZ, H ;
ZAHNER, H ;
ROHR, J ;
ZEECK, A .
JOURNAL OF ANTIBIOTICS, 1986, 39 (12) :1657-1669
[9]  
FAUST B, 2000, IN PRESS MICROBIOLOG
[10]  
Fernández E, 1998, J BACTERIOL, V180, P4929