Cloning, Expression, Characterization, and Biocatalytic Investigation of the 4-Hydroxyacetophenone Monooxygenase from Pseudomonas putida JD1

被引:38
作者
Rehdorf, Jessica [1 ]
Zimmer, Christian L. [1 ]
Bornscheuer, Uwe T. [1 ]
机构
[1] Ernst Moritz Arndt Univ Greifswald, Dept Biotechnol & Enzyme Catalysis, Inst Biochem, D-17487 Greifswald, Germany
关键词
BAEYER-VILLIGER MONOOXYGENASE; CYCLOHEXANONE MONOOXYGENASE; ESCHERICHIA-COLI; KINETIC RESOLUTION; FLUORESCENS ACB; OXIDATION; ENANTIOSELECTIVITY; METABOLISM; SEQUENCE; KETONES;
D O I
10.1128/AEM.02707-08
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
While the number of available recombinant Baeyer-Villiger monooxygenases (BVMOs) has grown significantly over the last few years, there is still the demand for other BVMOs to expand the biocatalytic diversity. Most BVMOs that have been described are dedicated to convert efficiently cyclohexanone and related cyclic aliphatic ketones. To cover a broader range of substrate types and enantio-and/or regioselectivities, new BVMOs have to be discovered. The gene encoding a BVMO identified in Pseudomonas putida JD1 converting aromatic ketones (HAPMO; 4-hydroxyacetophenone monooxygenase) was amplified from genomic DNA using SiteFinding-PCR, cloned, and functionally expressed in Escherichia coli. Furthermore, four other open reading frames could be identified clustered around this HAPMO. It has been suggested that these proteins, including the HAPMO, might be involved in the degradation of 4-hydroxyacetophenone. Substrate specificity studies revealed that a large variety of other arylaliphatic ketones are also converted via Baeyer-Villiger oxidation into the corresponding esters, with preferences for para-substitutions at the aromatic ring. In addition, oxidation of aldehydes and some heteroaromatic compounds was observed. Cycloketones and open-chain ketones were not or poorly accepted, respectively. It was also found that this enzyme oxidizes aromatic ketones such as 3-phenyl-2-butanone with excellent enantioselectivity (E >> 100).
引用
收藏
页码:3106 / 3114
页数:9
相关论文
共 39 条
  • [1] Towards large-scale synthetic applications of Baeyer-Villiger monooxygenases
    Alphand, V
    Carrea, G
    Wohlgemuth, R
    Furstoss, R
    Woodley, JM
    [J]. TRENDS IN BIOTECHNOLOGY, 2003, 21 (07) : 318 - 323
  • [2] [Anonymous], 2012, Molecular Cloning: A Laboratory Manual
  • [3] Baeyer A., 1899, Ber. Dtsch. Chem. Ges, V32, P3625, DOI [10.1002/cber.189903203151, DOI 10.1002/CBER.189903203151]
  • [4] CHEN CS, 1982, J AM CHEM SOC, V104
  • [5] ACINETOBACTER CYCLOHEXANONE MONOOXYGENASE - GENE CLONING AND SEQUENCE DETERMINATION
    CHEN, YCJ
    PEOPLES, OP
    WALSH, CT
    [J]. JOURNAL OF BACTERIOLOGY, 1988, 170 (02) : 781 - 789
  • [6] First asymmetric epoxidation catalysed by cyclohexanone monooxygenase
    Colonna, S
    Gaggero, N
    Carrea, G
    Ottolina, G
    Pasta, P
    Zambianchi, F
    [J]. TETRAHEDRON LETTERS, 2002, 43 (10) : 1797 - 1799
  • [7] Oxidation of organic cyclic sulfites to sulfates: a new reaction catalyzed by cyclohexanone monooxygenase
    Colonna, S
    Gaggero, N
    Carrea, G
    Pasta, P
    [J]. CHEMICAL COMMUNICATIONS, 1998, (03) : 415 - 416
  • [8] Biocatalytic properties of Baeyer-Villiger monooxygenases in aqueous-organic media
    de Gonzalo, G
    Ottolina, G
    Zambianchi, F
    Fraaije, MW
    Carrea, G
    [J]. JOURNAL OF MOLECULAR CATALYSIS B-ENZYMATIC, 2006, 39 (1-4) : 91 - 97
  • [9] Large scale production of cyclohexanone monooxygenase from Escherichia coli TOP10 pQR239
    Doig, SD
    O'Sullivan, LM
    Patel, S
    Ward, JM
    Woodley, JM
    [J]. ENZYME AND MICROBIAL TECHNOLOGY, 2001, 28 (2-3) : 265 - 274
  • [10] METABOLISM OF CYCLOHEXANOL BY ACINETOBACTER NCIB-9871
    DONOGHUE, NA
    TRUDGILL, PW
    [J]. EUROPEAN JOURNAL OF BIOCHEMISTRY, 1975, 60 (01): : 1 - 7