A thermostable and organic-solvent tolerant esterase from Pseudomonas putida ECU1011: Catalytic properties and performance in kinetic resolution of α-hydroxy acids

被引:47
作者
Ma, Bao-Di [1 ]
Yu, Hui-Lei [1 ]
Pan, Jiang [1 ]
Liu, Jia-Yan [1 ]
Ju, Xin [1 ]
Xu, Jian-He [1 ]
机构
[1] E China Univ Sci & Technol, State Key Lab Bioreactor Engn, Lab Biocatalysis & Synthet Biotechnol, Shanghai 200237, Peoples R China
基金
中国国家自然科学基金;
关键词
Esterase; Thermostability; Organic-solvent tolerance; alpha-Hydroxy (carboxylic) acids; Deacetylation; ENANTIOSELECTIVE HYDROLYSIS; SEQUENCE SIMILARITY; CARBOXYLIC-ACIDS; MANDELIC-ACID; LIPASE; BIOCATALYSIS; OVEREXPRESSION; OPTIMIZATION; PURIFICATION; ACYLATION;
D O I
10.1016/j.biortech.2013.01.089
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
A novel esterase, rPPE01, from Pseudomonas putida ECU1011 was heterologously expressed in Escherichia coli and identified for enzymatic resolution of hydroxy acids via O-deacetylation. alpha-Acetoxy carboxylates were converted with approximately 50% yield and excellent enantioselectivity (E > 200) at a substrate concentration of 100 mM. The half-lives of rPPE01 were 14 days at 50 degrees C and 30 days at 30 degrees C, indicating the enzyme has relatively high thermostability. Another remarkable advantage of rPPE01 is that both the activity and thermostability were enhanced significantly in the presence of hydrophobic alkanes and ethers. rPPE01 retained 159% of its initial activity after incubation with 50% (v/v) n-heptane at 30 degrees C for 60 days. The attractive organic-solvent tolerance, good thermostability and high enantioselectivity towards alpha-acetoxy carboxylates endow rPPE01 with the potential of practical application for the production of enantiopure hydroxy acids. (C) 2013 Elsevier Ltd. All rights reserved.
引用
收藏
页码:354 / 360
页数:7
相关论文
共 33 条
  • [1] SYNTHESIS OF CHIRAL ALPHA-ARYL-ALPHA-HYDROXYACETIC ACIDS - SUBSTITUENT EFFECTS IN PIG-LIVER ACETONE POWDER (PLAP) INDUCED ENANTIOSELECTIVE HYDROLYSIS
    BASAVAIAH, D
    KRISHNA, PR
    [J]. TETRAHEDRON, 1995, 51 (08) : 2403 - 2416
  • [2] Bornscheuer UT, 2002, FEMS MICROBIOL REV, V26, P73, DOI 10.1111/j.1574-6976.2002.tb00599.x
  • [3] Enzymatic resolution of substituted mandelic acids
    Campbell, RF
    Fitzpatrick, K
    Inghardt, T
    Karlsson, O
    Nilsson, K
    Reilly, JE
    Yet, L
    [J]. TETRAHEDRON LETTERS, 2003, 44 (29) : 5477 - 5481
  • [4] An organic-solvent-tolerant esterase from turkey pharyngeal tissue
    Cherif, Slim
    Gargouri, Youssef
    [J]. BIORESOURCE TECHNOLOGY, 2010, 101 (10) : 3732 - 3736
  • [5] Kinetics of enantioselective enzymatic acylation of mandelic acid
    Dabkowska, Katarzyna
    Szewczyk, Krzysztof W.
    [J]. JOURNAL OF BIOTECHNOLOGY, 2007, 131 (02) : S79 - S80
  • [6] Mechanistic rationale for the NaBH4 reduction of α-keto esters
    Dalla, V
    Catteau, JP
    Pale, P
    [J]. TETRAHEDRON LETTERS, 1999, 40 (28) : 5193 - 5196
  • [7] Production, partial purification and characterization of organic solvent tolerant lipase from Burkholderia multivorans V2 and its application for ester synthesis
    Dandavate, Vrushah
    Jinjala, Jayesh
    Keharia, Haresh
    Madamwar, Datta
    [J]. BIORESOURCE TECHNOLOGY, 2009, 100 (13) : 3374 - 3381
  • [8] Enzymes from extremophiles
    Demirjian, DC
    Morís-Varas, F
    Cassidy, CS
    [J]. CURRENT OPINION IN CHEMICAL BIOLOGY, 2001, 5 (02) : 144 - 151
  • [9] Optimization of Serratia marcescens lipase production for enantioselective hydrolysis of 3-phenylglycidic acid ester
    Gao, L
    Xu, JH
    Li, XJ
    Liu, ZZ
    [J]. JOURNAL OF INDUSTRIAL MICROBIOLOGY & BIOTECHNOLOGY, 2004, 31 (11) : 525 - 530
  • [10] Substrate spectrum of mandelate racemase -: Part 1:: Variation of the α-hydroxy acid moiety
    Goriup, M
    Strauss, UT
    Felfer, U
    Kroutil, W
    Faber, K
    [J]. JOURNAL OF MOLECULAR CATALYSIS B-ENZYMATIC, 2001, 15 (4-6) : 207 - 212