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Hydroxycinnamic acids and curcumin production in engineered Escherichia coli using heat shock promoters

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바이오화학분류
    • 바이오플라스틱
      1. 플라스틱
    • 바이오정밀화학
      1. 화학제품
    • 화장품용 기능성소재
      1. 기능성
      2. 계면활성제⁄증점제
    • 의료용 화학소재
      1. 건강보조식품
논문

Hydroxycinnamic acids and curcumin production in engineered Escherichia coli using heat shock promoters

학술지

Biochemical engineering journal

저자명

Rodrigues, J.L.; Couto, M.R.; Araujo, R.G.; Prather, K.L.J.; Kluskens, L.; Rodrigues, L.R.

초록

Hydroxycinnamic acids and curcumin are compounds with great therapeutic potential, including anticancer properties. In this study, p-coumaric acid, caffeic acid and curcumin were produced in Escherichia coli. Their production was induced by heat using the dnaK and ibpA heat shock promoters. The ribosome binding site (RBS) used was tested and further optimized for each gene to assure an efficient translation. p-Coumaric acid was successfully produced from tyrosine and caffeic acid was produced either from tyrosine or p-coumaric acid using tyrosine ammonia lyase (TAL) from Rhodotorula glutinis, 4-coumarate 3-hydroxylase (C3H) from Saccharothrix espanaensis or cytochrome P450 CYP199A2 from Rhodopseudomonas palustris. The highest p-coumaric acid production obtained was 2.5mM; caffeic acid production reached 370μM. Regarding curcumin, 17μM was produced using 4-coumarate-CoA ligase (4CL1) from Arabidopsis thaliana, diketide-CoA synthase (DCS) and curcumin synthase 1 (CURS1) from Curcuma longa. Stronger RBSs and/or different induction conditions should be further evaluated to optimize those production levels. Herein it was demonstrated that the biosynthetic pathway of p-coumaric acid, caffeic acid and curcumin in E. coli can be triggered by using heat shock promoters, suggesting its potential for the development of new industrial bioprocesses or even new bacterial therapies.

발행연도

2017

발행기관

Elsevier

ISSN

1369-703x

125

페이지

pp.41-49

주제어

Heat shock promoters; E. coli; Biosynthetic pathway; Caffeic acid; p-Coumaric acid; Curcumin

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논문; 2017-09-01

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