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Inhibition, crystal structures, and in-solution oligomeric structure of aldehyde dehydrogenase 9A1.
Wyatt, Jesse W; Korasick, David A; Qureshi, Insaf A; Campbell, Ashley C; Gates, Kent S; Tanner, John J.
Affiliation
  • Wyatt JW; Department of Chemistry, University of Missouri, Columbia, MO, 65211, United States.
  • Korasick DA; Department of Biochemistry, University of Missouri, Columbia, MO, 65211, United States.
  • Qureshi IA; Department of Biotechnology & Bioinformatics, School of Life Sciences, University of Hyderabad, Prof. C.R. Rao Road, Hyderabad, 500046, India.
  • Campbell AC; Department of Biochemistry, University of Missouri, Columbia, MO, 65211, United States.
  • Gates KS; Department of Chemistry, University of Missouri, Columbia, MO, 65211, United States; Department of Biochemistry, University of Missouri, Columbia, MO, 65211, United States.
  • Tanner JJ; Department of Chemistry, University of Missouri, Columbia, MO, 65211, United States; Department of Biochemistry, University of Missouri, Columbia, MO, 65211, United States. Electronic address: tannerjj@missouri.edu.
Arch Biochem Biophys ; 691: 108477, 2020 09 30.
Article in En | MEDLINE | ID: mdl-32717224
ABSTRACT
Aldehyde dehydrogenase 9A1 (ALDH9A1) is a human enzyme that catalyzes the NAD+-dependent oxidation of the carnitine precursor 4-trimethylaminobutyraldehyde to 4-N-trimethylaminobutyrate. Here we show that the broad-spectrum ALDH inhibitor diethylaminobenzaldehyde (DEAB) reversibly inhibits ALDH9A1 in a time-dependent manner. Possible mechanisms of inhibition include covalent reversible inactivation involving the thiohemiacetal intermediate and slow, tight-binding inhibition. Two crystal structures of ALDH9A1 are reported, including the first of the enzyme complexed with NAD+. One of the structures reveals the active conformation of the enzyme, in which the Rossmann dinucleotide-binding domain is fully ordered and the inter-domain linker adopts the canonical ß-hairpin observed in other ALDH structures. The oligomeric structure of ALDH9A1 was investigated using analytical ultracentrifugation, small-angle X-ray scattering, and negative stain electron microscopy. These data show that ALDH9A1 forms the classic ALDH superfamily dimer-of-dimers tetramer in solution. Our results suggest that the presence of an aldehyde substrate and NAD+ promotes isomerization of the enzyme into the active conformation.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Aldehyde Dehydrogenase Limits: Humans Language: En Journal: Arch Biochem Biophys Year: 2020 Document type: Article Affiliation country: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Aldehyde Dehydrogenase Limits: Humans Language: En Journal: Arch Biochem Biophys Year: 2020 Document type: Article Affiliation country: United States
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