4.6 Article

Characterization of an Allylic/Benzyl Alcohol Dehydrogenase from Yokenella sp Strain WZY002, an Organism Potentially Useful for the Synthesis of α,β-Unsaturated Alcohols from Allylic Aldehydes and Ketones

Journal

APPLIED AND ENVIRONMENTAL MICROBIOLOGY
Volume 80, Issue 8, Pages 2399-2409

Publisher

AMER SOC MICROBIOLOGY
DOI: 10.1128/AEM.03980-13

Keywords

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Funding

  1. Natural Science Foundation of Zhejiang Province [LY12B06011]
  2. National High Technology Research and Development Program of China [2011AA02A210]
  3. Research Foundation of Education Bureau of Zhejiang Province [Y201122330]

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A novel whole-cell biocatalyst with high allylic alcohol-oxidizing activities was screened and identified as Yokenella sp. WZY002, which chemoselectively reduced the CAO bond of allylic aldehydes/ketones to the corresponding alpha,beta-unsaturated alcohols at 30 degrees C and pH 8.0. The strain also had the capacity of stereoselectively reducing aromatic ketones to (S)-enantioselective alcohols. The enzyme responsible for the predominant allylic/benzyl alcohol dehydrogenase activity was purified to homogeneity and designated YsADH (alcohol dehydrogenase from Yokenella sp.), which had a calculated subunit molecular mass of 36,411 Da. The gene encoding YsADH was subsequently expressed in Escherichia coli, and the purified recombinant YsADH protein was characterized. The enzyme strictly required NADP(H) as a coenzyme and was putatively zinc dependent. The optimal pH and temperature for crotonaldehyde reduction were pH 6.5 and 65 degrees C, whereas those for crotyl alcohol oxidation were pH 8.0 and 55 degrees C. The enzyme showed moderate thermostability, with a half-life of 6.2 h at 55 degrees C. It was robust in the presence of organic solvents and retained 87.5% of the initial activity after 24 h of incubation with 20% (vol/vol) dimethyl sulfoxide. The enzyme preferentially catalyzed allylic/benzyl aldehydes as the substrate in the reduction of aldehydes/ketones and yielded the highest activity of 427 U mg(-1) for benzaldehyde reduction, while the alcohol oxidation reaction demonstrated the maximum activity of 79.9 U mg(-1) using crotyl alcohol as the substrate. Moreover, kinetic parameters of the enzyme showed lower K-m values and higher catalytic efficiency for crotonaldehyde/benzaldehyde and NADPH than for crotyl alcohol/benzyl alcohol and NADP(+), suggesting the nature of being an aldehyde reductase.

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