Recombinant production and characterization of an N-acyl-D-amino acid amidohydrolase from Streptomyces sp 64E6

被引:7
作者
Arima, Jiro [1 ]
Isoda, Yoshitaka [1 ]
Hatanaka, Tadashi [2 ]
Mori, Nobuhiro [1 ]
机构
[1] Tottori Univ, Fac Agr, Dept Agr Biol & Environm Sci, Tottori 6808553, Japan
[2] RIBS, Okayama 7161241, Japan
关键词
D-Amino acid; N-Acyl-D-amino acid amidohydrolase; Streptomyces; Sequence-based screening; D-GLUTAMATE AMIDOHYDROLASE; ALCALIGENES-FAECALIS DA1; COMPLETE GENOME SEQUENCE; D-AMINOACYLASE; ENZYME; AMINOPEPTIDASE; PURIFICATION; GENE;
D O I
10.1007/s11274-012-1245-5
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
N-Acyl-d-amino acid amidohydrolases (d-aminoacylases) are often used as tools for the optical resolution of d-amino acids, which are important products with applications in industries related to medicine and cosmetics. For this study, genes encoding d-aminoacylase were cloned from the genomes of Streptomyces spp. using sequence-based screening. They were expressed by Escherichia coli and Streptomyces lividans. Almost all of the cell-free extracts exhibit hydrolytic activity toward N-acetyl-(Ac-)d-Phe (0.05-6.32 mu mol min(-1) mg(-1)) under conditions without CoCl2. Addition of 1 mM CoCl2 enhanced their activity. Among them, the highest activity was observed from cell-free extracts prepared from S. lividans that possess the d-aminoacylase gene of Streptomyces sp. 64E6 (specific activities were, respectively, 7.34 and 9.31 mu mol min(-1) mg(-1) for N-Ac-d-Phe and N-Ac-d-Met hydrolysis). Furthermore, when using glycerol as a carbon source for cultivation, the recombinant enzyme from Streptomyces sp. 64E6 was produced in 4.2-fold greater quantities by S. lividans than when using glucose. d-Aminoacylase from Streptomyces sp. 64E6 showed optimum at pH 8.0-9.0. It was stable at pH 5.5-9.0 up to 30 A degrees C. The enzyme hydrolyzed various N-acetyl-d-amino acids that have hydrophobic side chains. In addition, the activity toward N-chloroacetyl-d-Phe was 2.1-fold higher than that toward N-Ac-d-Phe, indicating that the structure of N-acylated portion of substrate altered the activity.
引用
收藏
页码:899 / 906
页数:8
相关论文
共 27 条
  • [1] ALLAIN CC, 1974, CLIN CHEM, V20, P470
  • [2] Gene cloning and overproduction of an aminopeptidase from Streptomyces septatus TH-2, and comparison with a calcium-activated enzyme from Streptomyces griseus
    Arima, J
    Iwabuchi, M
    Hatanaka, T
    [J]. BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2004, 317 (02) : 531 - 538
  • [3] Streptomyces aminopeptidase P:: biochemical characterization and insight into the roles of its N-terminal domain
    Arima, Jiro
    Uesugi, Yoshiko
    Iwabuchi, Masaki
    Hatanaka, Tadashi
    [J]. PROTEIN ENGINEERING DESIGN & SELECTION, 2008, 21 (01) : 45 - 53
  • [4] Enzymes acting on peptides containing D-amino acid
    Asano, Y
    Lübbehüsen, TL
    [J]. JOURNAL OF BIOSCIENCE AND BIOENGINEERING, 2000, 89 (04) : 295 - 306
  • [5] Complete genome sequence of the model actinomycete Streptomyces coelicolor A3(2)
    Bentley, SD
    Chater, KF
    Cerdeño-Tárraga, AM
    Challis, GL
    Thomson, NR
    James, KD
    Harris, DE
    Quail, MA
    Kieser, H
    Harper, D
    Bateman, A
    Brown, S
    Chandra, G
    Chen, CW
    Collins, M
    Cronin, A
    Fraser, A
    Goble, A
    Hidalgo, J
    Hornsby, T
    Howarth, S
    Huang, CH
    Kieser, T
    Larke, L
    Murphy, L
    Oliver, K
    O'Neil, S
    Rabbinowitsch, E
    Rajandream, MA
    Rutherford, K
    Rutter, S
    Seeger, K
    Saunders, D
    Sharp, S
    Squares, R
    Squares, S
    Taylor, K
    Warren, T
    Wietzorrek, A
    Woodward, J
    Barrell, BG
    Parkhill, J
    Hopwood, DA
    [J]. NATURE, 2002, 417 (6885) : 141 - 147
  • [6] Improving catalytic function by ProSAR-driven enzyme evolution
    Fox, Richard J.
    Davis, S. Christopher
    Mundorff, Emily C.
    Newman, Lisa M.
    Gavrilovic, Vesna
    Ma, Steven K.
    Chung, Loleta M.
    Ching, Charlene
    Tam, Sarena
    Muley, Sheela
    Grate, John
    Gruber, John
    Whitman, John C.
    Sheldon, Roger A.
    Huisman, Gjalt W.
    [J]. NATURE BIOTECHNOLOGY, 2007, 25 (03) : 338 - 344
  • [7] pTONA5: A hyperexpression vector in streptomycetes
    Hatanaka, Tadashi
    Onaka, Hiroyasu
    Arima, Jiro
    Uraji, Misugi
    Uesugi, Yoshiko
    Usuki, Hirokazu
    Nishimoto, Yukifumi
    Iwabuchi, Masaki
    [J]. PROTEIN EXPRESSION AND PURIFICATION, 2008, 62 (02) : 244 - 248
  • [8] Extracellular Production and Characterization of Streptomyces X-prolyl Dipeptidyl Aminopeptidase
    Hatanaka, Tadashi
    Yamasato, Akihiro
    Arima, Jiro
    Usuki, Hirokazu
    Yamamoto, Yukihiro
    Kumagai, Yuya
    [J]. APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY, 2011, 164 (04) : 475 - 486
  • [9] Hopwood DA, 1985, GENETIC MANIPULATION, P70
  • [10] Structural-based mutational analysis of D-aminoacylase from Alcaligenes faecalis DA1
    Hsu, CS
    Lai, WL
    Chang, WW
    Liaw, SH
    Tsai, YC
    [J]. PROTEIN SCIENCE, 2002, 11 (11) : 2545 - 2550