Two New Unspecific Peroxygenases from Heterologous Expression of Fungal Genes in Escherichia coli

被引:48
|
作者
Linde, Dolores [1 ]
Olmedo, Andres [2 ]
Gonzalez-Benjumea, Alejandro [2 ]
Estevez, Maria [1 ]
Renau-Minguez, Chantal [1 ]
Carro, Juan [1 ]
Fernandez-Fueyo, Elena [1 ,3 ]
Gutierrez, Ana [2 ]
Martinez, Angel T. [1 ]
机构
[1] CSIC, Ctr Invest Biol, Madrid, Spain
[2] CSIC, Inst Recursos Nat & Agrobiol Sevilla, Seville, Spain
[3] Technol Univ Delf, Delft, Netherlands
基金
欧盟地平线“2020”;
关键词
unspecific peroxygenase (UPO); gene screening; Collariella virescens; Daidinia caldariorum; Escherichia coil expression; enzyme purification; enzyme characterization; aromatic substrate oxidation; site-directed mutagenesis; active site; FATTY-ACID EPOXIDATION; CRYSTAL-STRUCTURE; PHANEROCHAETE-CHRYSOSPORIUM; LIGNIN PEROXIDASE; CHLOROPEROXIDASE; HALOPEROXIDASE; CONVERSION; EVOLUTION; CATALYZES; PROTEINS;
D O I
10.1128/AEM.02899-19
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
Unspecific peroxygenases (UPOs) constitute a new family of fungal heme-thiolate enzymes in which there is high biotechnological interest. Although several thousand genes encoding hypothetical UPO-type proteins have been identified in sequenced fungal genomes and other databases, only a few UPO enzymes have been experimentally characterized to date. Therefore, gene screening and heterologous expression from genetic databases are a priority in the search for ad hoc UPOs for oxyfunctionalization reactions of interest. Very recently, Escherichia coil production of a previously described basidiomycete UPO (as a soluble and active enzyme) has been reported. Here, we explored this convenient heterologous expression system to obtain the protein products from available putative UPO genes. In this way, two UPOs from the ascomycetes Collarielia virescens (syn., Chaetornium virescens) and Daidinia caldariorum were successfully obtained, purified, and characterized. Comparison of their kinetic constants for oxidation of model substrates revealed 10- to 20-fold-higher catalytic efficiency of the latter enzyme in oxidizing simple aromatic compounds (such as veratryl alcohol, naphthalene, and benzyl alcohol). Homology molecular models of these enzymes showed three conserved and two differing residues in the distal side of the heme (the latter representing two different positions of a phenylalanine residue). Interestingly, replacement of the C. virescens UPO Phe88 by the homologous residue in the D. caldariorurn UPO resulted in an F88L variant with 5- to 21-fold-higher efficiency in oxidizing these aromatic compounds. IMPORTANCE UPOs catalyze regio- and stereoselective oxygenations of both aromatic and aliphatic compounds. Similar reactions were previously described for cytochrome P450 monooxygenases, but UPOs have the noteworthy biotechnological advantage of being stable enzymes requiring only H2O2 to be activated. Both characteristics are related to the extracellular nature of UPOs as secreted proteins. In the present study, the limited repertoire of UPO enzymes available for organic synthesis and other applications is expanded with the description of two new ascomycete UPOs obtained by Escherichia coli expression of the corresponding genes as soluble and active enzymes. Moreover, directed mutagenesis in E. coil, together with enzyme molecular modeling, provided relevant structure-function information on aromatic substrate oxidation by these two new biocatalysts.
引用
收藏
页数:16
相关论文
共 50 条
  • [21] EFFICIENT EXPRESSION OF HETEROLOGOUS GENES IN ESCHERICHIA-COLI - THE PAS VECTOR SYSTEM AND ITS APPLICATIONS
    SHATZMAN, AR
    ROSENBERG, M
    ANNALS OF THE NEW YORK ACADEMY OF SCIENCES, 1986, 478 : 233 - 248
  • [22] Heterologous expression of algal fucosyltransferases and sulfotransferases in Escherichia coli
    Zayed, Ahmed
    Ledermann, Benjamin
    Fischoeder, Thomas
    Elling, Lothar
    Frankenberg-Dinkel, Nicole
    Ulber, Roland
    BIOCHEMICAL ENGINEERING JOURNAL, 2025, 218
  • [23] EXPRESSION OF HETEROLOGOUS UNFUSED PROTEIN IN ESCHERICHIA-COLI
    REMAUT, E
    MARMENOUT, A
    SIMONS, G
    FIERS, W
    METHODS IN ENZYMOLOGY, 1987, 153 : 416 - 431
  • [24] Optimization of the heterologous expression of banana glucanase in Escherichia coli
    Abughren, Mohamed
    Popovic, Milica
    Dimitrijevic, Rajna
    Burazer, Lidija
    Grozdanovic, Milica
    Atanaskovic-Markovic, Marina
    Gavrovic-Jankulovic, Marija
    JOURNAL OF THE SERBIAN CHEMICAL SOCIETY, 2012, 77 (01) : 43 - 52
  • [25] Strategies for optimizing heterologous protein expression in Escherichia coli
    Hannig, G
    Makrides, SC
    TRENDS IN BIOTECHNOLOGY, 1998, 16 (02) : 54 - 60
  • [26] Heterologous Expression and Efficient Secretion of Chitosanase from Microbacterium sp in Escherichia coli
    Sun, Yuying
    Zhang, Jiquan
    Wang, Shujun
    INDIAN JOURNAL OF MICROBIOLOGY, 2015, 55 (02) : 194 - 199
  • [27] Modulation of heterologous expression from PBAD promoter in Escherichia coli production strains
    Szeliova, Diana
    Krahulec, Jan
    Safranek, Martin
    Liskova, Veronika
    Turna, Jan
    JOURNAL OF BIOTECHNOLOGY, 2016, 236 : 1 - 9
  • [28] Construction of a new tumour necrosis factor fusion-protein expression vector for high-level expression of heterologous genes in Escherichia coli
    Han, W
    Zhang, YQ
    Yan, Z
    Shi, JH
    BIOTECHNOLOGY AND APPLIED BIOCHEMISTRY, 2003, 37 : 109 - 113
  • [29] The expression of three desaturase genes of Spirulina platensis in Escherichia coli DH5α -: Heterologous expression of Spirulina-desaturase genes
    Apiradee, H
    Kalyanee, P
    Pongsathon, P
    Patcharaporn, D
    Matura, S
    Sanjukta, S
    Supapon, C
    Morakot, T
    MOLECULAR BIOLOGY REPORTS, 2004, 31 (03) : 177 - 189
  • [30] The expression of three desaturase genes of Spirulina platensis in Escherichia coli DH5α – Heterologous expression of Spirulina-desaturase genes
    Hongsthong Apiradee
    Paithoonrangsarid Kalyanee
    Prapugrangkul Pongsathon
    Deshnium Patcharaporn
    Sirijuntarut Matura
    Subhudhi Sanjukta
    Cheevadhanarak Supapon
    Tanticharoen Morakot
    Molecular Biology Reports, 2004, 31 : 177 - 189