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January 17, 2026BioTech0 citationsOpen Access

Iron-Containing Alcohol Dehydrogenase from Hyperthermophiles

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CTChing TseKMKesen Ma

Key Points

  • The aim is to analyze the biochemical properties and potential applications of iron-containing alcohol dehydrogenases from hyperthermophiles.
  • Comparative analysis of biophysical and biochemical properties of Fe-ADHs
  • Review of kinetic properties and thermostability
  • Assessment of metal ion specificity and catalytic mechanisms
  • Fe-ADHs exhibit exceptional thermostability and catalytic versatility
  • Enzymes primarily function in aldehyde detoxification and redox homeostasis
  • Highlight their potential as robust biocatalysts for high-temperature applications

Abstract

Iron-containing alcohol dehydrogenases (Fe-ADHs) from hyperthermophiles represent a distinct class of oxidoreductases characterized by exceptional thermostability, catalytic versatility, and unique metal-dependent properties. Despite considerable sequence diversity, Fe-ADHs share conserved motifs and a two-domain architecture essential for iron coordination and NAD(P)H cofactor binding. Physiologically, these enzymes are predicted to function primarily in aldehyde detoxification and redox homeostasis, with some also participating in fermentative alcohol production. Their remarkable stability and catalytic efficiency highlight their potential as robust biocatalysts for high-temperature industrial bioprocesses. This review presents a comprehensive comparative analysis of the biophysical, biochemical, and kinetic properties of Fe-ADHs, focusing on their thermostability, metal ion specificity, and catalytic mechanisms, as well as highlighting their potential for industrial biocatalytic applications.

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Cite This Study

Tse et al. (2026) studied this question.

synapsesocial.com/papers/696b2672d2a12237a9349b97https://doi.org/10.3390/biotech15010006
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