AI Article Synopsis

  • Disulfide bonds between cysteine residues are crucial for the structure and stability of proteins and peptides, influencing their biological activities.
  • A new dithiol amino acid (Dtaa) can form two disulfide bridges at one site, significantly enhancing the inhibitory activity of certain protease and receptor inhibitors.
  • Dtaas prevent unwanted disulfide isomer formation and help maintain native structures, suggesting their potential in designing stable and effective peptides and proteins.

Article Abstract

The disulfide bonds that form between two cysteine residues are important in defining and rigidifying the structures of proteins and peptides. In polypeptides containing multiple cysteine residues, disulfide isomerization can lead to multiple products with different biological activities. Here, we describe the development of a dithiol amino acid (Dtaa) that can form two disulfide bridges at a single amino acid site. Application of Dtaas to a serine protease inhibitor and a nicotinic acetylcholine receptor inhibitor that contain disulfide constraints enhanced their inhibitory activities 40- and 7.6-fold, respectively. X-ray crystallographic and NMR structure analysis show that the peptide ligands containing Dtaas have retained their native tertiary structures. We furthermore show that replacement of two cysteines by Dtaas can avoid the formation of disulfide bond isomers. With these properties, Dtaas are likely to have broad application in the rational design or directed evolution of peptides and proteins with high activity and stability.

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Source
http://dx.doi.org/10.1038/nchem.2043DOI Listing

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