Directed Evolution of Pyridoxine 5'-Phosphate Oxidase from Nakaseomyces bracarensis
WANG Mei-ling
CHEN Yu-xian
ZHENG Xiao-yin
LU Bei-si
YANG Xin-wei
Abstract:Pyridoxine 5'-phosphate oxidase(PdxH)is a rate-limiting enzyme in the biosynthesis pathway of pyridoxal-5'-phosphate(PLP),which is the key to the efficient synthesis of PLP.PdxH from Nakaseomyces bracarensis(NbPdxH)was selected as the study object.NbPdxH was modified through directed evolution and high-throughput screening to improve the catalytic activity of the enzyme.A pRB1s-NbpdxHM8/BW25113 mutant with improved catalytic efficiency was successfully obtained through screening.The PLP production reached 5.3 g·L-1,and the conversion ratio of PNP was 71%,which was 27%higher than that of the original strain.Through the structural analysis,it was speculated that the charge near the active site of NbPdxHM8 was changed,which improved the binding efficiency of the enzyme and the substrate.The relevant research results provided a new idea for the efficient synthesis of PLP.
Keywords:PLPPdxHDirected evolutionHigh-throughput screening
Publication Date:2024-12-28
Online Publishing Date:2025-08-15(First online date of this platform, not the publication date of the document)
Pages:6( 1-6 )
Fujian Agricultural Science and Technology

Fujian Agricultural Science and Technology

ISSN:0253-2301
Year, Vol.(Issue):2024,55(12)