Molecules (Nov 2023)

Influence of Amino Acid Substitutions in ApoMb on Different Stages of Unfolding of Amyloids

  • Natalya Katina,
  • Victor Marchenkov,
  • Natalya Ryabova,
  • Nelly Ilyina,
  • Natalia Marchenko,
  • Vitalii Balobanov,
  • Alexey Finkelstein

DOI
https://doi.org/10.3390/molecules28237736
Journal volume & issue
Vol. 28, no. 23
p. 7736

Abstract

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To date, most research on amyloid aggregation has focused on describing the structure of amyloids and the kinetics of their formation, while the conformational stability of fibrils remains insufficiently explored. The aim of this work was to investigate the effect of amino acid substitutions on the stability of apomyoglobin (ApoMb) amyloids. A study of the amyloid unfolding of ApoMb and its six mutant variants by urea has been carried out. Changes in the structural features of aggregates during unfolding were recorded by far-UV CD and native electrophoresis. It was shown that during the initial stage of denaturation, amyloids’ secondary structure partially unfolds. Then, the fibrils undergo dissociation and form intermediate aggregates weighing approximately 1 MDa, which at the last stage of unfolding decompose into 18 kDa monomeric unfolded molecules. The results of unfolding transitions suggest that the stability of the studied amyloids relative to the intermediate aggregates and of the latter relative to unfolded monomers is higher for ApoMb variants with substitutions that increase the hydrophobicity of the residues. The results presented provide a new insight into the mechanism of stabilization of protein aggregates and can serve as a base for further investigations of the amyloids’ stability.

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