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Functionalized resorcinarenes effectively disrupt the aggregation of αA66-80 crystallin peptide related to cataracts.
Twum, Kwaku; Bhattacharjee, Avik; Laryea, Erving T; Esposto, Josephine; Omolloh, George; Mortensen, Shaelyn; Jaradi, Maya; Stock, Naomi L; Schileru, Nicholas; Elias, Bianca; Pszenica, Elan; McCormick, Theresa M; Martic, Sanela; Beyeh, Ngong Kodiah.
Afiliação
  • Twum K; Department of Chemistry, Oakland University 146 Library Drive Rochester MI 48309-4479 USA beyeh@oakland.edu.
  • Bhattacharjee A; Department of Chemistry, Portland State University 1710 SW 10th Ave Portland OR 97201 USA.
  • Laryea ET; Department of Chemistry, Oakland University 146 Library Drive Rochester MI 48309-4479 USA beyeh@oakland.edu.
  • Esposto J; Department of Forensic Science and Environmental and Life Sciences Program, Trent University ON K9 L0G2 Canada sanelamartic@trentu.ca.
  • Omolloh G; Department of Chemistry, Portland State University 1710 SW 10th Ave Portland OR 97201 USA.
  • Mortensen S; Department of Forensic Science and Environmental and Life Sciences Program, Trent University ON K9 L0G2 Canada sanelamartic@trentu.ca.
  • Jaradi M; Department of Chemistry, Oakland University 146 Library Drive Rochester MI 48309-4479 USA beyeh@oakland.edu.
  • Stock NL; Water Quality Centre, Trent University ON K9L 0G2 Canada.
  • Schileru N; Department of Chemistry, Oakland University 146 Library Drive Rochester MI 48309-4479 USA beyeh@oakland.edu.
  • Elias B; Department of Osteopathic Medicine, Midwestern University 555 31st St. Downers Grove IL 60515 USA.
  • Pszenica E; Department of Chemistry, Oakland University 146 Library Drive Rochester MI 48309-4479 USA beyeh@oakland.edu.
  • McCormick TM; Department of Chemistry, Oakland University 146 Library Drive Rochester MI 48309-4479 USA beyeh@oakland.edu.
  • Martic S; Department of Chemistry, Portland State University 1710 SW 10th Ave Portland OR 97201 USA.
  • Beyeh NK; Department of Forensic Science and Environmental and Life Sciences Program, Trent University ON K9 L0G2 Canada sanelamartic@trentu.ca.
RSC Med Chem ; 12(12): 2022-2030, 2021 Dec 15.
Article em En | MEDLINE | ID: mdl-35028562
ABSTRACT
Cataracts, an eye lens clouding disease, are debilitating and while operable, remain without a cure. αA66-80 crystallin peptide abundant in cataracted eye lenses contributes to aggregation of αA-crystallin protein leading to cataracts. Inspired by the versatility of macrocycles and programmable guest selectivity through discrete functionalizations, we report on three water-soluble ionic resorcinarene receptors (A, B, and C) that disrupt the aggregation of αA66-80 crystallin peptide. A and B each possess four anionic sulfonate groups, while C includes four cationic ammonium groups with four flexible extended benzyl groups. Through multiple non-covalent attractions, these receptors successfully disrupt and reverse the aggregation of αA66-80 crystallin peptide, which was studied through spectroscopic, spectrometric, calorimetric, and imaging techniques. The αA66-80·receptor complexes were also explored using molecular dynamics simulation, and binding energies were calculated. Even though each of the three receptors can bind with the peptide, receptor C was characterized by the highest binding energy and affinity for three different domains of the peptide. In effect, the most efficient inhibitor was a cationic receptor C via extended aromatic interactions. These results highlight the potential of versatile and tunable functionalized resorcinarenes as potential therapeutics to reverse the aggregation of α-crystallin dominant in eye cataracts.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article