GENETICS OF STREPTOMYCIN PRODUCTION IN STREPTOMYCES-GRISEUS - MOLECULAR-STRUCTURE AND PUTATIVE FUNCTION OF GENES STRELMB2N

被引:91
作者
PISSOWOTZKI, K [1 ]
MANSOURI, K [1 ]
PIEPERSBERG, W [1 ]
机构
[1] BERG UNIV GESAMTHSCH WUPPERTAL,LEHRSTUHL MIKROBIOL,GAUSS STR 20,W-5600 WUPPERTAL 1,GERMANY
来源
MOLECULAR & GENERAL GENETICS | 1991年 / 231卷 / 01期
关键词
STREPTOMYCIN; STREPTOMYCETES; ANTIBIOTIC BIOSYNTHESIS; 6-DEOXYHEXOSES;
D O I
10.1007/BF00293829
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 nucleotide sequence of a 5.1 kb fragment from the streptomycin biosynthetic gene cluster from Streptomyces griseus revealed the presence of five open reading frames which form part of two convergently oriented transcription units strDEL and strNB2M. The coding capacity for polypeptide products was calculated to be 35.7 kDa (StrE), 32.2 kDa (StrL), 35.6 kDa (StrN), 38.2 kDa (StrB2), and 21.9 kDa (StrM), respectively. Various observations suggested that the gene products StrD (dTDP-glucose synthase), StrE (dTDP-glucose dehydratase), StrM (dTDP-4-keto-6-deoxyglucose 3,5-epimerase), and StrL (dTDP-dihydrostreptose synthase) are involved in biosynthesis of the streptose moiety of streptomycin. StrE and StrL are significantly similar in primary structure to each other and to other oxidoreductases (epimerases) involved in hexose metabolism. Genes for dTDP-glucose synthase and dehydratase occur in other gene clusters for antibiotic production. Therefore, the strD and strE genes could serve as universal probes indicative of the presence of biosynthetic capacity for 6-deoxyhexose moieties. The StrB2 protein showed 69% amino acid identity to the first-step amidinotransferase StrB1. The presence of both strB genes appears to be the result of a gene duplication event. The gene product StrN contains sequence motifs also conserved in the putative catalytic and/or substrate recognition domains of aminoglycoside phosphotransferases and eucaryotic protein kinases. The possible role of a TTA codon, located near the start of the strN reading frame, in regulation of the str cluster is discussed.
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收藏
页码:113 / 123
页数:11
相关论文
共 57 条
[41]  
THOMPSON CJ, 1983, P NATL ACAD SCI-BIOL, V80, P5190, DOI 10.1073/pnas.80.17.5190
[42]   NUCLEOTIDE-SEQUENCE OF THE STREPTOMYCINPHOSPHOTRANSFERASE AND AMIDINOTRANSFERASE GENES FROM STREPTOMYCES-GRISEUS [J].
TOHYAMA, H ;
OKAMI, Y ;
UMEZAWA, H .
NUCLEIC ACIDS RESEARCH, 1987, 15 (04) :1819-1833
[43]  
VANKNIPPENBERG PH, 1990, RIBOSOME, P265
[44]  
VARA JA, 1988, J BIOL CHEM, V263, P14992
[45]   IDENTIFICATION AND SEQUENCE OF RFBS AND RFBE, WHICH DETERMINE ANTIGENIC SPECIFICITY OF GROUP-A AND GROUP-D SALMONELLAE [J].
VERMA, N ;
REEVES, P .
JOURNAL OF BACTERIOLOGY, 1989, 171 (10) :5694-5701
[46]   FUNCTIONS OF SECONDARY METABOLITES [J].
VINING, LC .
ANNUAL REVIEW OF MICROBIOLOGY, 1990, 44 :395-427
[47]   CHARACTERIZATION OF THE HYDROXYSTREPTOMYCIN PHOSPHOTRANSFERASE GENE (SPH) OF STREPTOMYCES-GLAUCESCENS - NUCLEOTIDE-SEQUENCE AND PROMOTER ANALYSIS [J].
VOGTLI, M ;
HUTTER, R .
MOLECULAR & GENERAL GENETICS, 1987, 208 (1-2) :195-203
[48]  
VOGTLI M, 1987, THESIS ETH ZURICH
[49]   BIOSYNTHESIS OF STREPTOMYCIN - DTDP-DIHYDROSTREPTOSE SYNTHASE FROM STREPTOMYCES-GRISEUS AND DTDP-4-KETO-L-RHAMNOSE 3,5-EPIMERASE FROM S GRISEUS AND ESCHERICHIA-COLI-Y10 [J].
WAHL, HP ;
GRISEBACH, H .
BIOCHIMICA ET BIOPHYSICA ACTA, 1979, 568 (01) :243-252
[50]  
Walker J B, 1975, Methods Enzymol, V43, P429