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A universal polyphosphate kinase: PPK2c of Ralstonia eutropha accepts purine and pyrimidine nucleotides including uridine diphosphate Hildenbrand JC, Teleki A, Jendrossek D Applied Microbiology and Biotechnology, 104(15), 6659, 2020 |
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Development of a highly efficient and specific l-theanine synthase Yao J, Li J, Xiong DD, Qiu YY, Shi GZ, Jin JM, Tao Y, Tang SY Applied Microbiology and Biotechnology, 104(8), 3417, 2020 |
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Biosynthesis of (deoxy)guanosine-5 '-triphosphate by GMP kinase and acetate kinase fixed on the surface of E-coli Yao YF, Ding QB, Ou L Enzyme and Microbial Technology, 122, 82, 2019 |
4 |
Effects of ATP regeneration systems on the yields and solubilities of cell-free synthesized proteins Moon BJ, Lee KH, Kim DM Journal of Industrial and Engineering Chemistry, 70, 276, 2019 |
5 |
지질의 첨가를 통한 포도당 기반 무세포 단백질 합성 시스템의 단백질 발현 효율 향상 이소정, 김호철, 김동명 Korean Chemical Engineering Research, 57(1), 85, 2019 |
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Enzymatic Production of Glutathione Coupling with an ATP Regeneration System Based on Polyphosphate Kinase Cao H, Li CC, Zhao J, Wang F, Tan TW, Liu L Applied Biochemistry and Biotechnology, 185(2), 385, 2018 |
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Production of aminoacyl prolines using the adenylation domain of nonribosomal peptide synthetase with class III polyphosphate kinase 2-mediated ATP regeneration Suzuki S, Hara R, Kino K Journal of Bioscience and Bioengineering, 125(6), 644, 2018 |
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Rational design of substrate binding pockets in polyphosphate kinase for use in cost-effective ATP-dependent cascade reactions Cao H, Nie KL, Li CC, Xu HJ, Wang F, Tan TW, Liu L Applied Microbiology and Biotechnology, 101(13), 5325, 2017 |
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Novel one-pot ATP regeneration system based on three-enzyme cascade for industrial CTP production Wang JZ, Zheng C, Zhang TY, Liu YM, Cheng ZP, Liu D, Ying HJ, Niu HQ Biotechnology Letters, 39(12), 1875, 2017 |
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Biosynthesis of D-Xylulose 5-Phosphate From D-Xylose and Polyphosphate Through a Minimized Two-Enzyme Cascade Kim JE, Zhang YHP Biotechnology and Bioengineering, 113(2), 275, 2016 |