Molecular Characterization of the Iron-Containing Alcohol Dehydrogenase from the Extremely Thermophilic Bacterium Pseudothermotoga hypogea. [PDF]
Hao L, Ayinla Z, Ma K.
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ABSTRACT β‐Aminoisobutyric acid (BAIBA) is an exercise‐responsive myokine/metabolite released by skeletal muscle and has attracted increasing interest as a potential exercise mimetic and therapeutic candidate in preclinical research. BAIBA acts locally in skeletal muscle and can also reach distal organs through the circulation, contributing to the ...
Hao‐Zhe Wang +5 more
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Identification of Corn Peptides with Alcohol Dehydrogenase Activating Activity Absorbed by Caco-2 Cell Monolayers. [PDF]
Wang Z, Li G, Liu X.
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Gut microbiota signatures distinguish chronic constipated patients from healthy individuals, supporting noninvasive diagnostic potential. Despite challenges in identifying psychiatric‐related comorbidities, microbial alterations, particularly in neurotransmitter and inflammatory pathways, lay the groundwork for future companion diagnostics and ...
Hongyan Qi +7 more
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Plant Heat Shock Proteins Are More Effective in Enhancing Recombinant Alcohol Dehydrogenase Activity than Bacterial Ones In Vitro. [PDF]
Jung M, Park Y, Ahn YJ.
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Alcohol dehydrogenase system acts as the sole pathway for methanol oxidation in Desulfofundulus kuznetsovii strain TPOSR. [PDF]
Friedeheim L +4 more
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Substitution of both histidines in the active site of yeast alcohol dehydrogenase 1 exposes underlying pH dependencies. [PDF]
Jacobi T, Kratzer DA, Plapp BV.
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Solvent isotope and mutagenesis studies on the proton relay system in yeast alcohol dehydrogenase 1. [PDF]
Plapp BV.
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Genome-wide identification of alcohol dehydrogenase (ADH) gene family in oilseed rape (Brassica napus L.) and BnADH36 functional verification under salt stress. [PDF]
Zhang H +9 more
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Gastrointestinal Alcohol Dehydrogenase
Nutrition Reviews, 2009Alcohol dehydrogenase (ADH) consists of a family of isozymes that convert alcohols to their corresponding aldehydes using NAD+ as a cofactor. The metabolism of ethanol by gastrointestinal ADH isozymes results in the production of acetaldehyde, a highly toxic compound that binds to cellular protein and DNA if not further metabolized to acetate by ...
H K, Seitz, C M, Oneta
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