Biosynthesis of l -Sorbose and l -Psicose Based on C—C Bond Formation Catalyzed by Aldolases in an Engineered Corynebacterium glutamicum Strain

Author:

Yang Jiangang1,Li Jitao1,Men Yan1,Zhu Yueming1,Zhang Ying1,Sun Yuanxia1,Ma Yanhe1

Affiliation:

1. National Engineering Laboratory for Industrial Enzymes, Tianjin Institute of Industrial Biotechnology, Chinese Academy of Sciences, Tianjin, China

Abstract

ABSTRACT The property of loose stereochemical control at aldol products from aldolases helped to synthesize multiple polyhydroxylated compounds with nonnatural stereoconfiguration. In this study, we discovered for the first time that some fructose 1,6-diphosphate aldolases (FruA) and tagatose 1,6-diphosphate (TagA) aldolases lost their strict stereoselectivity when using l -glyceraldehyde and synthesized not only l -sorbose but also a high proportion of l -psicose. Among the aldolases tested, TagA from Bacillus licheniformis (BGatY) showed the highest enzyme activity with l -glyceraldehyde. Subsequently, a “one-pot” reaction based on BGatY and fructose-1-phosphatase (YqaB) generated 378 mg/liter l -psicose and 199 mg/liter l -sorbose from dihydroxyacetone-phosphate (DHAP) and l -glyceraldehyde. Because of the high cost and instability of DHAP, a microbial fermentation strategy was used further to produce l -sorbose/ l -psicose from glucose and l -glyceraldehyde, in which DHAP was obtained from glucose through the glycolytic pathway, and some recombination pathways based on FruA or TagA and YqaB were constructed in Escherichia coli and Corynebacterium glutamicum strains. After evaluation of different host cells and combinations of FruA or TagA with YqaB and optimization of gene expression, recombinant C. glutamicum strain WT(pXFTY) was selected and produced 2.53 g/liter total ketoses, with a yield of 0.50 g/g l -glyceraldehyde. Moreover, deletion of gene cgl0331 , encoding the Zn-dependent alcohol dehydrogenase in C. glutamicum , was confirmed for the first time to significantly decrease conversion of l -glyceraldehyde to glycerol and to increase yield of target products. Finally, fed-batch culture of strain SY14(pXFTY) produced 3.5 g/liter l -sorbose and 2.3 g/liter l -psicose, with a yield of 0.61 g/g l -glyceraldehyde. This microbial fermentation strategy also could be applied to efficiently synthesize other l -sugars.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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