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A high catalytic efficiency and chemotolerant formate dehydrogenase from Bacillus simplex

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논문

A high catalytic efficiency and chemotolerant formate dehydrogenase from Bacillus simplex

학술지

Biotechnology journal

저자명

Boonkumkrong, Rattima; Chunthaboon, Paweenapon; Munkajohnpong, Pobthum; Watthaisong, Pratchaya; Pimviriyakul, Panu; Maenpuen, Somchart; Chaiyen, Pimchai; Tinikul, Ruchanok

초록

<P><B>Abstract</B><P>NAD<SUP>+</SUP>&#x2010;dependent formate dehydrogenase (FDH) catalyzes the conversion of formate and NAD<SUP>+</SUP> to produce carbon dioxide and NADH. The reaction is biotechnologically important because FDH is widely used for NADH regeneration in various enzymatic syntheses. However, major drawbacks of this versatile enzyme in industrial applications are its low activity, requiring its utilization in large amounts to achieve optimal process conditions. Here, FDH from <I>Bacillus simplex</I> (BsFDH) was characterized for its biochemical and catalytic properties in comparison to FDH from <I>Pseudomonas</I> sp. 101 (PsFDH), a commonly used FDH in various biocatalytic reactions. The data revealed that BsFDH possesses high formate oxidizing activity with a <I>k</I>cat value of 15.3 ± 1.9 s<SUP>&#x2212;1</SUP> at 25&deg;C compared to 7.7 ± 1.0 s<SUP>&#x2212;1</SUP> for PsFDH. At the optimum temperature (60&deg;C), BsFDH exhibited 6&#x2010;fold greater activity than PsFDH. The BsFDH displayed higher pH stability and a superior tolerance toward sodium azide and H2O2 inactivation, showing a 200&#x2010;fold higher <I>K</I>i value for azide inhibition and remaining stable in the presence of 0.5% H2O2 compared to PsFDH. The application of BsFDH as a cofactor regeneration system for the detoxification of 4&#x2010;nitrophenol by the reaction of HadA, which produced a H2O2 byproduct was demonstrated. The biocatalytic cascades using BsFDH demonstrated a distinct superior conversion activity because the system tolerated H2O2 well. Altogether, the data showed that BsFDH is a robust enzyme suitable for future application in industrial biotechnology.</P></P>

발행연도

2024

발행기관

Wiley (John WileySons)

ISSN

1860-6768

ISSN

1860-7314

19

1

페이지

pp.2300330

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1 2023-12-11

논문; 2024-01-01

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