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Artificially designed routes for the conversion of starch to value-added mannosyl compounds through coupling in vitro and in vivo metabolic engineering strategies

Metab Eng. 2020-07-01; 
Chaoyu Tian, Jiangang Yang, Yunjie Li, Tong Zhang, Jiao Li, Chenxi Ren, Yan Men, Peng Chen, Chun You, Yuanxia Sun, Yanhe Ma
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Codon Optimization … Bifidobacterium longum, mpg from Pyrococcus horikoshii, mgs from Rhodothermus marinus DSM 4252, mbp from Listeria innocua and Thermoanaerobacter spX514 were codon-optimized according to usage bias in Escherichia coli, synthesized by GenScript (Nanjing, China … Get A Quote

摘要

Starch/cellulose has become the major feedstock for manufacturing biofuels and biochemicals because of their abundance and sustainability. In this study, we presented an artificially designed "starch-mannose-fermentation" biotransformation process through coupling the advantages of in vivo and in vitro metabolic engineering strategies together. Starch was initially converted into mannose via an in vitro metabolic engineering biosystem, and then mannose was fermented by engineered microorganisms for biomanufacturing valuable mannosyl compounds. The in vitro metabolic engineering biosystem based on phosphorylation/dephosphorylation reactions was thermodynamically favorable and the conversion rate reached 81%. The... More

關鍵詞

In vitro metabolic engineering, Mannosyl-oligosaccharides, Mannosylglycerate, Starch, Synthetic biology
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