Metabolic engineering for the high-yield production of isoprenoid-based C5 alcohols in E. coli

被引:0
|
作者
Kevin W. George
Mitchell G. Thompson
Aram Kang
Edward Baidoo
George Wang
Leanne Jade G. Chan
Paul D. Adams
Christopher J. Petzold
Jay D. Keasling
Taek Soon Lee
机构
[1] Joint BioEnergy Institute,Physical Biosciences Division
[2] Lawrence Berkeley National Laboratory,Department of Plant and Microbial Biology
[3] University of California,Department of Bioengineering
[4] University of California,Department of Chemical & Biomolecular Engineering
[5] University of California,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Branched five carbon (C5) alcohols are attractive targets for microbial production due to their desirable fuel properties and importance as platform chemicals. In this study, we engineered a heterologous isoprenoid pathway in E. coli for the high-yield production of 3-methyl-3-buten-1-ol, 3-methyl-2-buten-1-ol and 3-methyl-1-butanol, three C5 alcohols that serve as potential biofuels. We first constructed a pathway for 3-methyl-3-buten-1-ol, where metabolite profiling identified NudB, a promiscuous phosphatase, as a likely pathway bottleneck. We achieved a 60% increase in the yield of 3-methyl-3-buten-1-ol by engineering the Shine-Dalgarno sequence of nudB, which increased protein levels by 9-fold and reduced isopentenyl diphosphate (IPP) accumulation by 4-fold. To further optimize the pathway, we adjusted mevalonate kinase (MK) expression and investigated MK enzymes from alternative microbes such as Methanosarcina mazei. Next, we expressed a fusion protein of IPP isomerase and the phosphatase (Idi1~NudB) along with a reductase (NemA) to diversify production to 3-methyl-2-buten-1-ol and 3-methyl-1-butanol. Finally, we used an oleyl alcohol overlay to improve alcohol recovery, achieving final titers of 2.23 g/L of 3-methyl-3-buten-1-ol (~70% of pathway-dependent theoretical yield), 150 mg/L of 3-methyl-2-buten-1-ol and 300 mg/L of 3-methyl-1-butanol.
引用
收藏
相关论文
共 50 条
  • [1] Metabolic engineering for the high-yield production of isoprenoid-based C5 alcohols in E-coli
    George, Kevin W.
    Thompson, Mitchell G.
    Kang, Aram
    Baidoo, Edward
    Wang, George
    Chan, Leanne Jade G.
    Adams, Paul D.
    Petzold, Christopher J.
    Keasling, Jay D.
    Lee, Taek Soon
    SCIENTIFIC REPORTS, 2015, 5
  • [2] Metabolic engineering of E. coli for the high-titer production of C5 alcohols
    George, Kevin W.
    Kang, Aram
    Chou, Howard
    Murray, Gregory W.
    Batth, Tanveer S.
    Adams, Paul D.
    Petzold, Christopher J.
    Keasling, Jay D.
    Lee, Taek Soon
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2014, 247
  • [3] Metabolic engineering for isoprenoid-based biofuel production
    Gupta, P.
    Phulara, S. C.
    JOURNAL OF APPLIED MICROBIOLOGY, 2015, 119 (03) : 605 - 619
  • [4] Advanced pathways for microbial production of branched C5 alcohols in E. coli
    Lee, Taek Soon
    Kang, Aram
    George, Kevin
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2015, 249
  • [5] Metabolic engineering for the microbial production of isoprenoids: Carotenoids and isoprenoid-based biofuels
    Niu, Fu-Xing
    Lu, Qian
    Bu, Yi-Fan
    Liu, Jian-Zhong
    SYNTHETIC AND SYSTEMS BIOTECHNOLOGY, 2017, 2 (03) : 167 - 175
  • [6] Metabolic engineering of Escherichia coli for high-yield uridine production
    Wu, Heyun
    Li, Yanjun
    Ma, Qian
    Li, Qiang
    Jia, Zifan
    Yang, Bo
    Xu, Qingyang
    Fan, Xiaoguang
    Zhang, Chenglin
    Chen, Ning
    Xie, Xixian
    METABOLIC ENGINEERING, 2018, 49 : 248 - 256
  • [7] The metabolic engineering of Escherichia coli for the high-yield production of hypoxanthine
    Zhao, Siyu
    Shi, Tangen
    Li, Liangwen
    Chen, Zhichao
    Li, Changgeng
    Yu, Zichen
    Sun, Pengjie
    Xu, Qingyang
    MICROBIAL CELL FACTORIES, 2024, 23 (01)
  • [8] Metabolic engineering of Escherichia coli for production of mixed isoprenoid alcohols and their derivatives
    Bakht Zada
    Chonglong Wang
    Ji-Bin Park
    Seong-Hee Jeong
    Ju-Eon Park
    Hawaibam Birla Singh
    Seon-Won Kim
    Biotechnology for Biofuels, 11
  • [9] Metabolic engineering of Escherichia coli for production of mixed isoprenoid alcohols and their derivatives
    Zada, Bakht
    Wang, Chonglong
    Park, Ji-Bin
    Jeong, Seong-Hee
    Park, Ju-Eon
    Singh, Hawaibam Birla
    Kim, Seon-Won
    BIOTECHNOLOGY FOR BIOFUELS, 2018, 11
  • [10] Metabolic engineering of E. coli for the production of O-succinyl-l-homoserine with high yield
    Jian-Feng Huang
    Bo Zhang
    Zhen-Yang Shen
    Zhi-Qiang Liu
    Yu-Guo Zheng
    3 Biotech, 2018, 8