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Identification and characterization of a novel 2R, 3R-Butanediol dehydrogenase from Bacillus sp. DL01
Elmahmoudy, Mostafa; Elfeky, Nora; Zhongji, Pu; Zhang, Yue; Bao, Yongming.
  • Elmahmoudy, Mostafa; Dalian University of Technology. School of Bioengineering. CN
  • Elfeky, Nora; Dalian University of Technology. School of Bioengineering. CN
  • Zhongji, Pu; Dalian University of Technology. School of Bioengineering. CN
  • Zhang, Yue; Dalian University of Technology. School of Bioengineering. CN
  • Bao, Yongming; Dalian University of Technology. School of Bioengineering. CN
Electron J Biotechnol ; 49: 56-63, Jan. 2021. tab, ilus, graf
Article in English | LILACS | ID: biblio-1291900
ABSTRACT

BACKGROUND:

2R,3R-butanediol dehydrogenase (R-BDH) and other BDHs contribute to metabolism of 3R/3S-Acetoin (3R/3S-AC) and 2,3-butanediol (2,3-BD), which are important bulk chemicals used in different industries. R-BDH is responsible for oxidizing the hydroxyl group at their (R) configuration. Bacillus species is a promising producer of 3R/3S-AC and 2,3-BD. In this study, R-bdh gene encoding R-BDH from Bacillus sp. DL01 was isolated, expressed and identified.

RESULTS:

R-BDH exerted reducing activities towards Diacetyl (DA) and 3R/3S-AC using NADH, and oxidizing activities towards 2R,3R-BD and Meso-BD using NAD+ , while no activity was detected with 2S,3S-BD. The R-BDH showed its activity at a wide range of temperature (25 C to 65 C) and pH (5.0­8.0). The R-BDH activity was increased significantly by Cd2+ when DA, 3R/3S-AC, and Meso-BD were used as substrates, while Fe2+ enhanced the activity remarkably at 2R,3R-BD oxidation. Kinetic parameters of the R-BDH from Bacillus sp. DL01 showed the lowest Km, the highest Vmax, and the highest Kcat towards the racemic 3R/3S-AC substrate, also displayed low Km towards 2R,3R-BD and Meso-BD when compared with other reported R-BDHs.

CONCLUSIONS:

The R-BDH from Bacillus sp. DL01 was characterized as a novel R-BDH with high enantioselectivity for R-configuration. It considered NAD+ and Zn2+ dependant enzyme, with a significant affinity towards 3R/3S-AC, 2R,3R-BD, and Meso-BD substrates. Thus, R-BDH is providing an approach to regulate the production of 3R/3S-AC or 2,3-BD from Bacillus sp. DL01.
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Full text: Available Index: LILACS (Americas) Main subject: Bacillus subtilis / Alcohol Oxidoreductases Type of study: Diagnostic study Language: English Journal: Electron J Biotechnol Year: 2021 Type: Article Affiliation country: China Institution/Affiliation country: Dalian University of Technology/CN

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Full text: Available Index: LILACS (Americas) Main subject: Bacillus subtilis / Alcohol Oxidoreductases Type of study: Diagnostic study Language: English Journal: Electron J Biotechnol Year: 2021 Type: Article Affiliation country: China Institution/Affiliation country: Dalian University of Technology/CN