FRUCTOSE CATABOLISM IN XANTHOMONAS-CAMPESTRIS PV CAMPESTRIS - SEQUENCE OF THE PTS OPERON, CHARACTERIZATION OF THE FRUCTOSE-SPECIFIC ENZYMES

被引:0
作者
DECRECYLAGARD, V
BOUVET, OMM
LEJEUNE, P
DANCHIN, A
机构
[1] INST PASTEUR, INSERM,U199,UNITE REGULAT EXPRESS GENET, 28 RUE DOCTEUR ROUX, F-75724 PARIS 15, FRANCE
[2] INST PASTEUR, INSERM, U199, UNITE ENTEROBACTERIES, F-75724 PARIS 15, FRANCE
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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
In Xanthomonas campestris pv. campestris, fructose is transported and phosphorylated into fructose 1-phosphate through a phosphoenolpyruvate-dependent phosphotransferase system. The nucleotide sequence of the fruA gene encoding the phosphotransferase system permease specific of fructose (EII(Fru)) was determined. The fructose 1-phosphate produced by the phosphotransferase system is phosphorylated into fructose 1,6-bisphosphate by a 1-phosphofructokinase. This enzyme was characterized and the corresponding gene (fruK) was sequenced. Sequence comparisons revealed that FruK is a member of a new family of ATP-binding proteins composed of sugar (or sugar-phosphate) kinases. In phosphotransferase system-deficient strains, fructose can still be transported by an unidentified permease. The intracellular fructose is then phosphorylated by a multimeric fructokinase of 135 kDa specific for fructose and inhibited by fructose, fructose 1,6-bisphosphate, and mannose. Several other enzymes of fructose metabolism were assayed and a potential pathway for fructose catabolism is presented.
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页码:18154 / 18161
页数:8
相关论文
共 55 条
[1]   CATABOLISM OF D-FRUCTOSE AND D-RIBOSE BY PSEUDOMONAS-DOUDOROFFII .2. PROPERTIES OF 1-PHOSPHOFRUCTOKINASE AND 6-PHOSPHOFRUCTOKINASE [J].
BAUMANN, L ;
BAUMANN, P .
ARCHIVES OF MICROBIOLOGY, 1975, 105 (03) :241-248
[2]   RHIZOBIUM-MELILOTI ADENYLATE-CYCLASE IS RELATED TO EUKARYOTIC ADENYLATE AND GUANYLATE CYCLASES [J].
BEUVE, A ;
BOESTEN, B ;
CRASNIER, M ;
DANCHIN, A ;
OGARA, F .
JOURNAL OF BACTERIOLOGY, 1990, 172 (05) :2614-2621
[3]   NUCLEOTIDE-SEQUENCE AND ANALYSIS OF THE VIBRIO-ALGINOLYTICUS SUCROSE UPTAKE-ENCODING REGION [J].
BLATCH, GL ;
SCHOLLE, RR ;
WOODS, DR .
GENE, 1990, 95 (01) :17-23
[4]   DIVERSITY OF THE PHOSPHOENOLPYRUVATE GLUCOSE PHOSPHOTRANSFERASE SYSTEM IN THE ENTEROBACTERIACEAE [J].
BOUVET, OMM ;
GRIMONT, PAD .
ANNALES DE L INSTITUT PASTEUR-MICROBIOLOGIE, 1987, 138 (01) :3-13
[5]   MOLECULAR-WEIGHTS OF PROTEIN MULTIMERS FROM POLYACRYLAMIDE-GEL ELECTROPHORESIS [J].
BRYAN, JK .
ANALYTICAL BIOCHEMISTRY, 1977, 78 (02) :513-519
[6]   DIFFERENT PATHWAYS FOR FRUCTOSE AND GLUCOSE-UTILIZATION IN RHODOPSEUDOMONAS-CAPSULATA AND DEMONSTRATION OF 1-PHOSPHOFRUCTOKINASE IN PHOTOTROPIC BACTERIA [J].
CONRAD, R ;
SCHLEGEL, HG .
BIOCHIMICA ET BIOPHYSICA ACTA, 1974, 358 (01) :221-225
[7]   NUCLEOTIDE-SEQUENCE OF GENE PFKB ENCODING THE MINOR PHOSPHOFRUCTOKINASE OF ESCHERICHIA-COLI K-12 [J].
DALDAL, F .
GENE, 1984, 28 (03) :337-342
[8]   PROPERTIES OF A TN5 INSERTION MUTANT DEFECTIVE IN THE STRUCTURAL GENE (FRUA) OF THE FRUCTOSE-SPECIFIC PHOSPHOTRANSFERASE SYSTEM OF RHODOBACTER-CAPSULATUS AND CLONING OF THE FRU REGULON [J].
DANIELS, GA ;
DREWS, G ;
SAIER, MH .
JOURNAL OF BACTERIOLOGY, 1988, 170 (04) :1698-1703
[9]  
DECRECYLAGARD V, 1991, IN PRESS MOL GEN GEN
[10]  
DELOBBE A, 1975, EUR J BIOCHEM, V51, P503