A highly selective biosynthetic pathway to non-natural C50 carotenoids assembled from moderately selective enzymes.

Maiko Furubayashi, Mayu Ikezumi, Shinichi Takaichi, Takashi Maoka, Hisashi Hemmi, Takuya Ogawa, Kyoichi Saito, Alexander V Tobias, Daisuke Umeno

Journal: Nature communications 2016;6():7534

PMID: 26168783

Abstract

Synthetic biology aspires to construct natural and non-natural pathways to useful compounds. However, pathways that rely on multiple promiscuous enzymes may branch, which might preclude selective production of the target compound. Here, we describe the assembly of a six-enzyme pathway in Escherichia coli for the synthesis of C50-astaxanthin, a non-natural purple carotenoid. We show that by judicious matching of engineered size-selectivity variants of the first two enzymes in the pathway, farnesyl diphosphate synthase (FDS) and carotenoid synthase (CrtM), branching and the production of non-target compounds can be suppressed, enriching the proportion of C50 backbones produced. We then further extend the C50 pathway using evolved or wild-type downstream enzymes. Despite not containing any substrate- or product-specific enzymes, the resulting pathway detectably produces only C50 carotenoids, including ∼ 90% C50-astaxanthin. Using this approach, highly selective pathways can be engineered without developing absolutely specific enzymes.

Address: Department of Applied Chemistry and Biotechnology, Chiba University, Chiba 263-8522, Japan.; Department of Biology, Nippon Medical School, Musashino, Tokyo 180-0023, Japan.; Research Institute for Production Development, Kyoto 606-0805, Japan.; Department of Applied Molecular Biosciences, Nagoya University, Nagoya 464-8601, Japan.; DuPont Industrial Biosciences, Experimental Station, Wilmington, Delaware 19803, USA.; 1] Department of Applied Chemistry and Biotechnology, Chiba University, Chiba 263-8522, Japan [2] Precursory Research for Embryonic Science and Technology (PRESTO), Japan Science and Technology Agency (JST), Saitama 332-0012, Japan.
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