Cloning and characterization of styrene catabolism genes from Pseudomonas fluorescens ST

被引:54
|
作者
Marconi, AM
Beltrametti, F
Bestetti, G
Solinas, F
Ruzzi, M
Galli, E
Zennaro, E
机构
[1] UNIV ROMA LA SAPIENZA,DEPT CELLULAR & DEV BIOL,I-00185 ROME,ITALY
[2] UNIV MILAN,DEPT GENET & BIOL MICROORGANISMS,I-20133 MILAN,ITALY
[3] UNIV ROME 3,DEPT BIOL,I-00154 ROME,ITALY
[4] LA TUSCIA UNIV,DEPT AGROBIOL & AGROCHEM,I-01100 VITERBO,ITALY
关键词
D O I
10.1128/AEM.62.1.121-127.1996
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
A gene bank from Pseudomonas fluorescens ST was constructed in the broad-host-range cosmid pLAFR3 and mobilized into Pseudomonas putida PaW340. Identification of recombinant cosmids containing the styrene catabolism genes was performed by screening transconjugants for growth on styrene and epoxystyrene. Transposon mutagenesis and subcloning of one of the selected genome fragments have led to the identification of three enzymatic activities: a monooxygenase activity encoded by a 3-kb PstI-EcoRI fragment and an epoxystyrene isomerase activity and an epoxystyrene reductase activity encoded by a 2.3-kb BamHI fragment. Escherichia coli clones containing the 3-kb PstI-EcoRI fragment were able to transform styrene into epoxystyrene, and those containing the 2.3-kb BamHI fragment converted epoxystyrene into phenylacetaldehyde or, only in the presence of glucose, into 2-phenylethanol. The three genes appear to be clustered and are probably encoded by the same DNA strand. In E. coli, expression of the epoxystyrene reductase gene was under the control of its own promoter, whereas the expression of the other two genes was dependent on the presence of an external vector promoter.
引用
收藏
页码:121 / 127
页数:7
相关论文
共 50 条
  • [21] CLONING AND CHARACTERIZATION OF ELASTASE GENES FROM PSEUDOMONAS-AERUGINOSA
    SCHAD, PA
    BEVER, RA
    NICAS, TI
    LEDUC, F
    HANNE, LF
    IGLEWSKI, BH
    JOURNAL OF BACTERIOLOGY, 1987, 169 (06) : 2691 - 2696
  • [22] A new biocatalyst for production of optically pure aryl epoxides by styrene monooxygenase from Pseudomonas fluorescens ST
    Di Gennaro, P
    Colmegna, A
    Galli, E
    Sello, G
    Pelizzoni, F
    Bestetti, G
    APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 1999, 65 (06) : 2794 - 2797
  • [23] Cloning and characterization of chemotaxis genes in Pseudomonas aeruginosa
    Kato, J
    Nakamura, T
    Kuroda, A
    Ohtake, H
    BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 1999, 63 (01) : 155 - 161
  • [24] INFLUENCE OF TEMPERATURE ON PATHWAYS OF GLUCOSE CATABOLISM IN PSEUDOMONAS FLUORESCENS
    PALUMBO, SA
    WITTER, LD
    CANADIAN JOURNAL OF MICROBIOLOGY, 1969, 15 (09) : 995 - &
  • [25] GLUCONATE REGULATION OF GLUCOSE CATABOLISM IN PSEUDOMONAS-FLUORESCENS
    QUAY, SC
    EISENBERG, RC
    FRIEDMAN, SB
    JOURNAL OF BACTERIOLOGY, 1972, 112 (01) : 291 - +
  • [26] EFFECT OF TEMPERATURE ON GLUCOSE CATABOLISM IN PSEUDOMONAS-FLUORESCENS
    FRANKLIN, M
    LYNCH, WH
    JOURNAL OF APPLIED BACTERIOLOGY, 1976, 41 (03): : R12 - R12
  • [27] ALTERNATIVE WAY OF CATABOLISM OF NAPHTALENE OF PSEUDOMONAS-FLUORESCENS
    SKRYABIN, GK
    STAROVOITOV, II
    DOKLADY AKADEMII NAUK SSSR, 1975, 221 (02): : 493 - 495
  • [28] Effect of nitrogen source on pyrimidine catabolism by Pseudomonas fluorescens
    Santiago, MF
    West, TP
    MICROBIOLOGICAL RESEARCH, 1999, 154 (03) : 221 - 224
  • [29] CLONING OF AN ENDOGLUCANASE GENE FROM PSEUDOMONAS-FLUORESCENS VAR CELLULOSA INTO ESCHERICHIA-COLI AND PSEUDOMONAS-FLUORESCENS
    LEJEUNE, A
    COLSON, C
    EVELEIGH, DE
    JOURNAL OF INDUSTRIAL MICROBIOLOGY, 1986, 1 (02): : 79 - 86
  • [30] Purification of the dissimilative nitrate reductase of Pseudomonas fluorescens and the cloning and sequencing of its corresponding genes
    Philippot, L
    ClaysJosserand, A
    Lensi, R
    Trinsoutreau, I
    Normand, P
    Potier, P
    BIOCHIMICA ET BIOPHYSICA ACTA-GENE STRUCTURE AND EXPRESSION, 1997, 1350 (03): : 272 - 276