Protein Engineering of a Pyridoxal-5'-Phosphate-Dependent l-Aspartate-α-Decarboxylase from Tribolium castaneum for β-Alanine Production.

MOLECULES(2020)

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摘要
In the present study, a pyridoxal-5 ' -phosphate (PLP)-dependent L-aspartate-alpha -decarboxylase from Tribolium castaneum (TcPanD) was selected for protein engineering to efficiently produce beta -alanine. A mutant TcPanD-R98H/K305S with a 2.45-fold higher activity than the wide type was selected through error-prone PCR, site-saturation mutagenesis, and 96-well plate screening technologies. The characterization of purified enzyme TcPanD-R98H/K305S showed that the optimal cofactor PLP concentration, temperature, and pH were 0.04% (m/v), 50 degrees C, and 7.0, respectively. The 1mM of Na+, Ni2+, Co2+, K+, and Ca2+ stimulated the activity of TcPanD-R98H/K305S, while only 5 mM of Ni2+ and Na+ could increase its activity. The kinetic analysis indicated that TcPanD-R98H/K305S had a higher substrate affinity and enzymatic reaction rate than the wild enzyme. A total of 267 g/L substrate l-aspartic acid was consumed and 170.5 g/L of beta -alanine with a molar conversion of 95.5% was obtained under the optimal condition and 5-L reactor fermentation.
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关键词
beta-alanine,pyridoxal-5 '-phosphate (PLP),l-aspartate-alpha-decarboxylase,directed evolution,characterization,whole-cell bioconversion
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