Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6491422 | Journal of Biotechnology | 2014 | 7 Pages |
Abstract
Uridine 5â²-monophosphate (5â²-UMP) and cytidine 5â²-monophosphate (5â²-CMP) were biosynthesized by recombinant uridine-cytidine kinase (UCK) and acetate kinase (ACK). The ack and uck genes from Escherichia coli K12 and the uck1, uck2 and ack genes from Lactobacillus bulgaricus ATCC 11842 were cloned and inserted into the plasmid pET-28a. All of the recombinant E. coli strains were capable of overexpressing UCK and ACK, which catalyzed the reaction using guanosine 5â²-triphosphate (GTP) as a phosphate intermediate that was regenerated by ACK from acetyl phosphate. The effect of several parameters, including the substrate concentration, the GTP concentration, the temperature and the reaction pH, were optimized. High efficiency was achieved if uridine or cytidine was phosphorylated by UCK encoded by uck from E. coli and ACK encoded by ack from L. bulgaricus. The maximum conversion yield of 5â²-UMP and 5â²-CMP was 97% at 37 °C and pH 7.5 when 30 mM uridine/cytidine and 0.5 mM GTP in a total of 1 mL were used. In addition, the 5â²-UMP and 5â²-CMP products were very stable in the reaction system and did not undergo significant degradation.
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Authors
Yahui Qian, Qingbao Ding, Yanyu Li, Zhi Zou, Bingkun Yan, Ling Ou,