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A biosynthetic pathway for hexanoic acid production in Kluyveromyces marxianus

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      1. 용매
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      3. 연료
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논문

A biosynthetic pathway for hexanoic acid production in Kluyveromyces marxianus

학술지

Journal of biotechnology

저자명

Cheon, Y.; Kim, J.S.; Park, J.B.; Heo, P.; Lim, J.H.; Jung, G.Y.; Seo, J.H.; Park, J.H.; Koo, H.M.; Cho, K.M.; Park, J.B.; Ha, S.J.; Kweon, D.H.

초록

Hexanoic acid can be used for diverse industrial applications and is a precursor for fine chemistry. Although some natural microorganisms have been screened and evolved to produce hexanoic acid, the construction of an engineered biosynthetic pathway for producing hexanoic acid in yeast has not been reported. Here we constructed hexanoic acid pathways in Kluyveromyces marxianus by integrating 5 combinations of seven genes (AtoB, BktB, Crt, Hbd, MCT1, Ter, and TES1), by which random chromosomal sites of the strain are overwritten by the new genes from bacteria and yeast. One recombinant strain, H4A, which contained AtoB, BktB, Crt, Hbd, and Ter, produced 154mg/L of hexanoic acid from galactose as the sole substrate. However, the hexanoic acid produced by the H4A strain was re-assimilated during the fermentation due to the reverse activity of AtoB, which condenses two acetyl-CoAs into a single acetoacetyl-CoA. This product instability could be overcome by the replacement of AtoB with a malonyl CoA-acyl carrier protein transacylase (MCT1) from Saccharomyces cerevisiae. Our results suggest that Mct1 provides a slow but stable acetyl-CoA chain elongation pathway, whereas the AtoB-mediated route is fast but unstable. In conclusion, hexanoic acid was produced for the first time in yeast by the construction of chain elongation pathways comprising 5-7 genes in K. marxianus.

발행연도

2014

발행기관

Elsevier Science Publishers

ISSN

0168-1656

ISSN

1873-4863

182

페이지

pp.30-36

주제어

Kluyveromyces marxianus; Hexanoic acid; MCT1; TES1; AtoB

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1 2023-12-11
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논문; 2014-07-01

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