Engineering Saccharomyces cerevisiae to produce feruloyl esterase for the release of ferulic acid from switchgrass

被引:26
|
作者
Wong, Dominic W. S. [1 ]
Chan, Victor J. [1 ]
Batt, Sarah B. [1 ]
Sarath, Gautam [2 ]
Liao, Hans [3 ]
机构
[1] ARS, Western Reg Res Ctr, USDA, Albany, CA USA
[2] ARS, Grain Forage & Bioenergy Res Unit, USDA, Lincoln, NE USA
[3] OPX Biotechnol, Boulder, CO USA
关键词
Feruloyl esterase; Saccharomyces cerevisiae; Expression; Switchgrass; ALPHA-AMYLASE; CROSS-LINKS; EXPRESSION; SECRETION; YEAST; DEGRADATION; ETHANOL; TRANSFORMATIONS; PRETREATMENT; FRACTIONS;
D O I
10.1007/s10295-011-0985-9
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
The Aspergillus niger feruloyl esterase gene (faeA) was cloned into Saccharomyces cerevisiae via a yeast expression vector, resulting in efficient expression and secretion of the enzyme in the medium with a yield of similar to 2 mg/l. The recombinant enzyme was purified to homogeneity by anion-exchange and hydrophobic interaction chromatography. The specific activity was determined to be 8,200 U/mu g (pH 6.5, 20 degrees C, 3.5 mM 4-nitrophenyl ferulate). The protein had a correct N-terminal sequence of ASTQGISEDLY, indicating that the signal peptide was properly processed. The FAE exhibited an optimum pH of 6-7 and operated optimally at 50 degrees C using ground switchgrass as the substrate. The yeast clone was demonstrated to catalyze the release of ferulic acid continuously from switchgrass in YNB medium at 30 degrees C. This work represents the first report on engineering yeast for the breakdown of ferulic acid crosslink to facilitate consolidated bioprocessing.
引用
收藏
页码:1961 / 1967
页数:7
相关论文
共 50 条
  • [31] A protease-insensitive feruloyl esterase from China Holstein cow rumen metagenomic library: Expression, characterization, and utilization in ferulic acid release from wheat straw
    College of Food Science and Nutritional Engineering, China Agricultural University, Beijing 100083, China
    不详
    Shen, L. (pingshen@cau.edu.cn), 1600, American Chemical Society (60):
  • [32] Modeling of esterase production from Saccharomyces cerevisiae
    Thilakavathi
    Basak, Tanmay
    Panda, Tapobrata
    JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY, 2008, 18 (05) : 889 - 896
  • [33] Metabolic engineering of Saccharomyces cerevisiae to produce a reduced viscosity oil from lignocellulose
    Tran, Tam N. T.
    Breuer, Rebecca J.
    Narasimhan, Ragothaman Avanasi
    Parreiras, Lucas S.
    Zhang, Yaoping
    Sato, Trey K.
    Durrett, Timothy P.
    BIOTECHNOLOGY FOR BIOFUELS, 2017, 10
  • [34] Metabolic engineering of Saccharomyces cerevisiae to produce 1-hexadecanol from xylose
    Guo, Weihua
    Sheng, Jiayuan
    Zhao, Huimin
    Feng, Xueyang
    MICROBIAL CELL FACTORIES, 2016, 15
  • [35] Metabolic engineering of Saccharomyces cerevisiae to produce 1-hexadecanol from xylose
    Weihua Guo
    Jiayuan Sheng
    Huimin Zhao
    Xueyang Feng
    Microbial Cell Factories, 15
  • [36] A Protease-Insensitive Feruloyl Esterase from China Holstein Cow Rumen Metagenomic Library: Expression, Characterization, and Utilization in Ferulic Acid Release from Wheat Straw
    Cheng, Fansheng
    Sheng, Jiping
    Cai, Ting
    Jin, Jian
    Liu, Wanzhen
    Lin, Yanmei
    Du, Yongxin
    Zhang, Maoqiu
    Shen, Lin
    JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2012, 60 (10) : 2546 - 2553
  • [37] Metabolic engineering of Saccharomyces cerevisiae to produce a reduced viscosity oil from lignocellulose
    Tam N. T. Tran
    Rebecca J. Breuer
    Ragothaman Avanasi Narasimhan
    Lucas S. Parreiras
    Yaoping Zhang
    Trey K. Sato
    Timothy P. Durrett
    Biotechnology for Biofuels, 10
  • [38] High efficiency co-production of ferulic acid and xylooligosaccharides from wheat bran by recombinant xylanase and feruloyl esterase
    Wu, Hongli
    Li, Hailong
    Xue, Yong
    Luo, Gan
    Gan, Lihui
    Liu, Jian
    Mao, Liuhao
    Long, Minnan
    BIOCHEMICAL ENGINEERING JOURNAL, 2017, 120 : 41 - 48
  • [39] Extracellular secretion of feruloyl esterase derived from Lactobacillus crispatus in Escherichia coli and its application for ferulic acid production
    Xu, Zhenshang
    Wang, Ting
    Zhang, Susu
    BIORESOURCE TECHNOLOGY, 2019, 288
  • [40] Structure and Mechanism of Ferulic Acid Decarboxylase (FDC1) from Saccharomyces cerevisiae
    Bhuiya, Mohammad Wadud
    Lee, Soon Goo
    Jez, Joseph M.
    Yu, Oliver
    APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2015, 81 (12) : 4216 - 4223