This work was supported by supported by Natural Science Foundation of Shaanxi Province(2020JM-177);Chinese Universities Scientific Fund(2452018314).
Microbial production of value-added products is a promising alternative to plant-and chemical-based routes[1].However,only few of interested chemicals are producing at bulk scale with microbial cell factories(eg.artem...
the National Natural Science Foundation of China(Project No.31900064);as well as the Natural Science Foundation of Heilongjiang Province of China(Project No.LH2019C012)。
L-phenylglycine(L-phg)is a valuable non-proteinogenic amino acid used as a precursor to β-lactam antibiotics,antitumor agent taxol and many other pharmaceuticals.L-phg synthesis through microbial bioconversion allows...
This work was supported by the National Key R&D Program of China(2018YFA0900300);the Tianjin Science Fund for Distinguished Young Scholars(17JCJQJC45300);the Science and Technology Service Network(STS)Initiative of the Chinese Academy of Sciences(CAS)(KFJ-STS-ZDTP-065).
Optimizing the supply of biosynthetic precursors and cofactors is usually an effective metabolic strategy to improve the production of target compounds.Here,the combination of optimizing precursor synthesis and balanc...
Research in our laboratory was supported in part by the Japan Science and Technology Agency(PRESTO,CREST,and A-STEP programs)and the Japan Society for the Promotion of Science(KAKENHI program).
Bio-based chemical production has drawn attention regarding the realization of a sustainable society.In vitro metabolic engineering is one of the methods used for the bio-based production of value-added chemicals.This...