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Article
Rational Pathway Engineering of Type I Fatty Acid Synthase Allows the Biosynthesis of Triacetic Acid Lactone from D-Glucose in Vivo
Journal of the American Chemical Society (2004)
  • Wenjuan Zha, University of Illinois at Urbana-Champaign
  • Zengyi Shao, University of Illinois at Urbana-Champaign
  • John W. Frost, Michigan State University
  • Huimin Zhao, University of Illinois at Urbana-Champaign
Abstract

Metabolic pathway engineering is a powerful tool to synthesize structurally diverse and complex chemicals via genetic manipulation of multistep catalytic systems involved in cell metabolism. Here, we report the rational design of a fatty acid biosynthetic pathway, Brevibacterium ammoniagenes fatty acid synthase B (FAS-B), that allows the microbial synthesis of triacetic acid lactone (TAL) from an inexpensive feedstock, D-glucose. TAL can be chemically converted to phloroglucinol, which is a core structure for the synthesis of various high value bioactive compounds and energetic compounds such as 1,3,5-triamino-2,4,6-trinitrobenzene (TATB). Synthesis of phloroglucinol from d-glucose using this combined biological and chemical synthesis may offer significant advantages over the current phloroglucinol manufacture, including environmental friendliness and reduction in the cost of phloroglucinol. More importantly, it represents a novel strategy for the benzene-free synthesis of aromatic chemicals.

Keywords
  • acetic acid derivative,
  • fatty acid synthase,
  • glucose,
  • lactone derivative,
  • phloroglucinol,
  • triacetic acid lactone,
  • brevibacerium
Publication Date
2004
Publisher Statement
Copyright 2004 American Chemical Society. Posted with permission.
Citation Information
Wenjuan Zha, Zengyi Shao, John W. Frost and Huimin Zhao. "Rational Pathway Engineering of Type I Fatty Acid Synthase Allows the Biosynthesis of Triacetic Acid Lactone from D-Glucose in Vivo" Journal of the American Chemical Society Vol. 126 Iss. 14 (2004)
Available at: http://works.bepress.com/zengyi_shao/1/