<p>Methyl (<i>R, S</i>)-2, 6-dimethylphenylaminopropionate ((<i>R, S</i>)-1) is an intermediate in the production of the agricultural fungicide (<i>R, S</i>)-metalaxyl. (<i>R, S</i>)-1 can be hydrolyzed enantioselectively by some hydrolases to produce (<i>R</i>)-1, which was used for the production of (<i>R</i>)-metalaxyl. In this work, a strain <i>Burkholderia</i> sp. YD106 that could hydrolyze (<i>R, S</i>)-1 was screened from the activated sludge, but it had almost no enantioselectivity. The intracellular active esterase WZest was successfully heterologously expressed in the recombinant <i>E. coli</i> BL21 (DE3)-pET-28a ( +)-GE04845. Using the recombinant strain as the parent strain, the mutants were constructed by a site-directed mutation. Among all 33 mutants, seven had altered enantioselectivity, of which four mutants were (<i>R</i>)-enantioselective and three were (<i>S</i>)-enantioselective. The mutant WZest-W23T had the highest (<i>R</i>)-enantioselectivity. When it catalyzed the hydrolysis of (<i>R, S</i>)-1 at 44.6% substrate conversion, <i>e.e.</i><sub>p</sub> reached 94.70% with an enantiomeric ratio (<i>E</i>) of 85.0. WZest showed significant amino acid sequence differences from the two reported esterases capable of hydrolyzing (<i>R, S</i>)-1. It was both active in two kinds of solutions. One was an emulsion with the substrate (<i>R, S</i>)-1 emulsified with Tween80, and the other was a homogeneous solution with acetone as a co-solvent. The activity of WZest in the former was higher than that in the latter.</p>

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A Novel Esterase from Burkholderia sp. YD106 Capable of Hydrolysis of Methyl (R, S)-N-(2, 6-Dimethylphenyl) Alaninate, and Its Mutation for Improving Enantioselectivity

  • Ruixue Yang,
  • Jianing Wu,
  • Yunhe Zhang,
  • Zhaohui Zhang

摘要

Methyl (R, S)-2, 6-dimethylphenylaminopropionate ((R, S)-1) is an intermediate in the production of the agricultural fungicide (R, S)-metalaxyl. (R, S)-1 can be hydrolyzed enantioselectively by some hydrolases to produce (R)-1, which was used for the production of (R)-metalaxyl. In this work, a strain Burkholderia sp. YD106 that could hydrolyze (R, S)-1 was screened from the activated sludge, but it had almost no enantioselectivity. The intracellular active esterase WZest was successfully heterologously expressed in the recombinant E. coli BL21 (DE3)-pET-28a ( +)-GE04845. Using the recombinant strain as the parent strain, the mutants were constructed by a site-directed mutation. Among all 33 mutants, seven had altered enantioselectivity, of which four mutants were (R)-enantioselective and three were (S)-enantioselective. The mutant WZest-W23T had the highest (R)-enantioselectivity. When it catalyzed the hydrolysis of (R, S)-1 at 44.6% substrate conversion, e.e.p reached 94.70% with an enantiomeric ratio (E) of 85.0. WZest showed significant amino acid sequence differences from the two reported esterases capable of hydrolyzing (R, S)-1. It was both active in two kinds of solutions. One was an emulsion with the substrate (R, S)-1 emulsified with Tween80, and the other was a homogeneous solution with acetone as a co-solvent. The activity of WZest in the former was higher than that in the latter.