AI Article Synopsis

  • The novel FAD-dependent oxidoreductase from Chaetomium thermophilum (CtFDO) is a heat-stable glycoprotein that does not react with common substrates of its enzyme family.
  • High-throughput screening identified no strong substrates, leading to protein crystallography studies that included fragment screening to determine its ligand-binding properties.
  • The structure of CtFDO reveals a large, accessible active-site pocket with unique amino acids involved in catalysis, demonstrating the enzyme's ability to bind complex polyaromatic compounds over 500 Da.

Article Abstract

The FAD-dependent oxidoreductase from Chaetomium thermophilum (CtFDO) is a novel thermostable glycoprotein from the glucose-methanol-choline (GMC) oxidoreductase superfamily. However, CtFDO shows no activity toward the typical substrates of the family and high-throughput screening with around 1000 compounds did not yield any strongly reacting substrate. Therefore, protein crystallography, including crystallographic fragment screening, with 42 fragments and 37 other compounds was used to describe the ligand-binding sites of CtFDO and to characterize the nature of its substrate. The structure of CtFDO reveals an unusually wide-open solvent-accessible active-site pocket with a unique His-Ser amino-acid pair putatively involved in enzyme catalysis. A series of six crystal structures of CtFDO complexes revealed five different subsites for the binding of aryl moieties inside the active-site pocket and conformational flexibility of the interacting amino acids when adapting to a particular ligand. The protein is capable of binding complex polyaromatic substrates of molecular weight greater than 500 Da.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8171062PMC
http://dx.doi.org/10.1107/S2059798321003533DOI Listing

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