Engineering fungal de novo fatty acid synthesis for short chain fatty acid production.

Gajewski, Jan; Pavlovic, Renata; Fischer, Manuel; Boles, Eckhard; Grininger, Martin · Nat Commun · 2017

basic_science · Level V

Where this comes from

Abstract

Fatty acids (FAs) are considered strategically important platform compounds that can be accessed by sustainable microbial approaches. Here we report the reprogramming of chain-length control of Saccharomyces cerevisiae fatty acid synthase (FAS). Aiming for short-chain FAs (SCFAs) producing baker's yeast, we perform a highly rational and minimally invasive protein engineering approach that leaves the molecular mechanisms of FASs unchanged. Finally, we identify five mutations that can turn baker's yeast into a SCFA producing system. Without any further pathway engineering, we achieve yields in extracellular concentrations of SCFAs, mainly hexanoic acid (C<sub>6</sub>-FA) and octanoic acid (C<sub>8</sub>-FA), of 464 mg l<sup>-1</sup> in total. Furthermore, we succeed in the specific production of C<sub>6</sub>- or C<sub>8</sub>-FA in extracellular concentrations of 72 and 245 mg l<sup>-1</sup>, respectively. The presented technology is applicable far beyond baker's yeast, and can be plugged into essentially all currently available FA overproducing microorganisms.

Medical subject headings