4.3 Article

Coupled biosynthesis and esterification of 1,2,4-butanetriol to simplify its separation from fermentation broth

期刊

ENGINEERING IN LIFE SCIENCES
卷 19, 期 6, 页码 444-451

出版社

WILEY
DOI: 10.1002/elsc.201800131

关键词

1; 2; 4-butanetriol esters; acyltransferase; biosynthesis; separation; trihydric alcohol

资金

  1. National Natural Science Foundation of China [31800081, 31722011, 31670089]
  2. CAS Key Program [ZDRW-ZS-2016-3M, KJZD-EW-G20, ZDBA-SSW-DQC002-03]
  3. Taishan Scholars Program of Shandong Province [ts201712076]
  4. Natural Science Foundation of Shandong [JQ201707]
  5. China Postdoctoral Science Foundation [2018M630860]
  6. CPSF-CAS Joint Foundation for Excellent Postdoctoral Fellows [2017LH034]

向作者/读者索取更多资源

1,2,4-Butanetriol (BT) is a valuable chemical with versatile applications in many fields and can be produced through biosynthetic pathways. As a trihydric alcohol, BT possesses good water solubility and is very difficult to separate from fermentation broth, which does complicate the production process and increase the cost. To develop a novel method for BT separation, a biosynthetic pathway for 1,2,4-butanetriol esters with poor water solubility was constructed. Wax ester synthase/acyl-coenzyme A: diacylglycerol acyltransferase (Atf) from Acinetobacter baylyi, Mycobacterium smegmatis, and Escherichia coli were screened, and the acyltransferase from A. baylyi (AtfA) was found to have higher capability. The BT producing strain with AtfA overexpression produced 49.5 mg/L BT oleate in flask cultivation. Through enhancement of acyl-CoA production by overexpression of the acyl-CoA synthetase gene fadD and deleting the acyl coenzyme A dehydrogenase gene fadE, the production was improved to 64.4 mg/L. Under fed-batch fermentation, the resulting strain produced up to 1.1 g/L BT oleate. This is the first time showed that engineered E. coli strains can successfully produce BT esters from xylose and free fatty acids.

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