Biocatalytic synthesis of S(-)-1-(1′-naphthyl) ethanol by a novel isolate of Candida viswanathii

被引:32
作者
Kamble, AL [1 ]
Soni, P [1 ]
Banerjee, UC [1 ]
机构
[1] Natl Inst Pharmaceut Educ & Res, Dept Pharmaceut Technol, Biocatalysis Lab, SAS Nagar 160062, Punjab, India
关键词
asymmetric reduction; 1-acetonaphthone; S(-)-1-(1 '-naphthyl) ethanol; Candida viswanathii;
D O I
10.1016/j.molcatb.2005.04.012
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A new yeast strain Candida viswanathii MTCC 5158, isolated from soil, is capable of carrying out the enantioselective reduction of 1-acetonaphthone to S(-)-1-(1'-naphthyl) ethanol which is an important synthetic intermediate of mevinic acid analogue, (potential inhibitor of 3-hydroxy methyl glutaryl coenzyme A reductase). Studies on the culture conditions and catalytic performance of this microorganism showed that the carbonyl reductase occurs constitutively in C. viswanathii and its production is enhanced by feeding acetonaphthone (2 mM) during the early period of cultivation. Mannitol (1%, w/v) was found to be beneficial both for growth and enzyme production. Supplementation of the media with yeast extract (0.5%) and Ca2+ (2 mM) enhanced the enzyme production. The optimal temperature and pH for the growth and enzyme production were 25 degrees C and 10, respectively. The organism produced enantiopure (S)-alcohol with good conversion (> 97%) and almost absolute enantioselectivity (ee > 99%). Parameters of the bioreduction reaction were optimized and the optimal temperature and pH for the reduction were found to be 25 degrees C and 8, respectively. The optimized substrate as well as the resting cell concentration was 2 and 200 g/l, respectively. The preparative scale reaction using resting cells of C. viswanathii yielded (S)-alcohol with 97% conversion and > 99% ee. (c) 2005 Elsevier B.V. All rights reserved.
引用
收藏
页码:1 / 6
页数:6
相关论文
共 20 条
  • [1] Potential applications of NAD(P)-dependent oxidoreductases in synthesis: A survey
    DevauxBasseguy, R
    Bergel, A
    Comtat, M
    [J]. ENZYME AND MICROBIAL TECHNOLOGY, 1997, 20 (04) : 248 - 258
  • [2] Biocatalytic preparation of enantiopure (R)-ketoprofen from its racemic ester by a new yeast isolate Citeromyces matriensis CGMCC 0573
    Gong, PF
    Wu, HY
    Xu, JH
    Shen, D
    Liu, YY
    [J]. APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2002, 58 (06) : 728 - 734
  • [3] Hage A, 2001, APPL MICROBIOL BIOT, V57, P79
  • [4] Biocatalysis and biotransformation - Probing the potential usefulness and the mechanisms of action of some novel biocatalysts - Editorial overview
    Hauer, B
    Roberts, SM
    [J]. CURRENT OPINION IN CHEMICAL BIOLOGY, 2004, 8 (02) : 103 - 105
  • [5] Large-scale applications of NAD(P)-dependent oxidoreductases: recent developments
    Hummel, W
    [J]. TRENDS IN BIOTECHNOLOGY, 1999, 17 (12) : 487 - 492
  • [6] Recent developments in asymmetric reduction of ketones with biocatalysts
    Nakamura, K
    Yamanaka, R
    Matsuda, T
    Harada, T
    [J]. TETRAHEDRON-ASYMMETRY, 2003, 14 (18) : 2659 - 2681
  • [7] BIOTRANSFORMATION OF AROMATIC KETONES WITH CELL-CULTURES OF CARROT, TOBACCO AND GARDENIA
    NAOSHIMA, Y
    AKAKABE, Y
    [J]. PHYTOCHEMISTRY, 1991, 30 (11) : 3595 - 3597
  • [8] Nguyen QD, 2000, FOOD TECHNOL BIOTECH, V38, P229
  • [9] Rodrigues JAR, 2004, FOOD TECHNOL BIOTECH, V42, P295
  • [10] Microbial reduction of 1-acetonapthone:: a highly efficient process for multigram synthesis of S(-)-1-(1′-napthyl) ethanol
    Roy, A
    Bhattacharyya, MS
    Kumar, LR
    Chawla, HPS
    Banerjee, UC
    [J]. ENZYME AND MICROBIAL TECHNOLOGY, 2003, 33 (05) : 576 - 580