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α-Crystallin chaperone mimetic drugs inhibit lens γ-crystallin aggregation: Potential role for cataract prevention

Γ-Crystallins play a major role in age-related lens transparency. Their destabilization by mutations and physical chemical insults are associated with cataract formation. Therefore, drugs that increase their stability should have anticataract properties. To this end, we screened 2560 Federal Drug Ag...

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Autores principales: Islam, Sidra, Do, Michael T., Frank, Brett S., Hom, Grant L., Wheeler, Samuel, Fujioka, Hisashi, Wang, Benlian, Minocha, Geeta, Sell, David R., Fan, Xingjun, Lampi, Kirsten J., Monnier, Vincent M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9525908/
https://www.ncbi.nlm.nih.gov/pubmed/36037967
http://dx.doi.org/10.1016/j.jbc.2022.102417
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author Islam, Sidra
Do, Michael T.
Frank, Brett S.
Hom, Grant L.
Wheeler, Samuel
Fujioka, Hisashi
Wang, Benlian
Minocha, Geeta
Sell, David R.
Fan, Xingjun
Lampi, Kirsten J.
Monnier, Vincent M.
author_facet Islam, Sidra
Do, Michael T.
Frank, Brett S.
Hom, Grant L.
Wheeler, Samuel
Fujioka, Hisashi
Wang, Benlian
Minocha, Geeta
Sell, David R.
Fan, Xingjun
Lampi, Kirsten J.
Monnier, Vincent M.
author_sort Islam, Sidra
collection PubMed
description Γ-Crystallins play a major role in age-related lens transparency. Their destabilization by mutations and physical chemical insults are associated with cataract formation. Therefore, drugs that increase their stability should have anticataract properties. To this end, we screened 2560 Federal Drug Agency–approved drugs and natural compounds for their ability to suppress or worsen H(2)O(2) and/or heat-mediated aggregation of bovine γ-crystallins. The top two drugs, closantel (C), an antihelminthic drug, and gambogic acid (G), a xanthonoid, attenuated thermal-induced protein unfolding and aggregation as shown by turbidimetry fluorescence spectroscopy dynamic light scattering and electron microscopy of human or mouse recombinant crystallins. Furthermore, binding studies using fluorescence inhibition and hydrophobic pocket–binding molecule bis-8-anilino-1-naphthalene sulfonic acid revealed static binding of C and G to hydrophobic sites with medium-to-low affinity. Molecular docking to HγD and other γ-crystallins revealed two binding sites, one in the “NC pocket” (residues 50–150) of HγD and one spanning the “NC tail” (residues 56–61 to 168–174 in the C-terminal domain). Multiple binding sites overlap with those of the protective mini αA-crystallin chaperone MAC peptide. Mechanistic studies using bis-8-anilino-1-naphthalene sulfonic acid as a proxy drug showed that it bound to MAC sites, improved T(m) of both H(2)O(2) oxidized and native human gamma D, and suppressed turbidity of oxidized HγD, most likely by trapping exposed hydrophobic sites. The extent to which these drugs act as α-crystallin mimetics and reduce cataract progression remains to be demonstrated. This study provides initial insights into binding properties of C and G to γ-crystallins.
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spelling pubmed-95259082022-10-04 α-Crystallin chaperone mimetic drugs inhibit lens γ-crystallin aggregation: Potential role for cataract prevention Islam, Sidra Do, Michael T. Frank, Brett S. Hom, Grant L. Wheeler, Samuel Fujioka, Hisashi Wang, Benlian Minocha, Geeta Sell, David R. Fan, Xingjun Lampi, Kirsten J. Monnier, Vincent M. J Biol Chem Research Article Γ-Crystallins play a major role in age-related lens transparency. Their destabilization by mutations and physical chemical insults are associated with cataract formation. Therefore, drugs that increase their stability should have anticataract properties. To this end, we screened 2560 Federal Drug Agency–approved drugs and natural compounds for their ability to suppress or worsen H(2)O(2) and/or heat-mediated aggregation of bovine γ-crystallins. The top two drugs, closantel (C), an antihelminthic drug, and gambogic acid (G), a xanthonoid, attenuated thermal-induced protein unfolding and aggregation as shown by turbidimetry fluorescence spectroscopy dynamic light scattering and electron microscopy of human or mouse recombinant crystallins. Furthermore, binding studies using fluorescence inhibition and hydrophobic pocket–binding molecule bis-8-anilino-1-naphthalene sulfonic acid revealed static binding of C and G to hydrophobic sites with medium-to-low affinity. Molecular docking to HγD and other γ-crystallins revealed two binding sites, one in the “NC pocket” (residues 50–150) of HγD and one spanning the “NC tail” (residues 56–61 to 168–174 in the C-terminal domain). Multiple binding sites overlap with those of the protective mini αA-crystallin chaperone MAC peptide. Mechanistic studies using bis-8-anilino-1-naphthalene sulfonic acid as a proxy drug showed that it bound to MAC sites, improved T(m) of both H(2)O(2) oxidized and native human gamma D, and suppressed turbidity of oxidized HγD, most likely by trapping exposed hydrophobic sites. The extent to which these drugs act as α-crystallin mimetics and reduce cataract progression remains to be demonstrated. This study provides initial insights into binding properties of C and G to γ-crystallins. American Society for Biochemistry and Molecular Biology 2022-08-28 /pmc/articles/PMC9525908/ /pubmed/36037967 http://dx.doi.org/10.1016/j.jbc.2022.102417 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Islam, Sidra
Do, Michael T.
Frank, Brett S.
Hom, Grant L.
Wheeler, Samuel
Fujioka, Hisashi
Wang, Benlian
Minocha, Geeta
Sell, David R.
Fan, Xingjun
Lampi, Kirsten J.
Monnier, Vincent M.
α-Crystallin chaperone mimetic drugs inhibit lens γ-crystallin aggregation: Potential role for cataract prevention
title α-Crystallin chaperone mimetic drugs inhibit lens γ-crystallin aggregation: Potential role for cataract prevention
title_full α-Crystallin chaperone mimetic drugs inhibit lens γ-crystallin aggregation: Potential role for cataract prevention
title_fullStr α-Crystallin chaperone mimetic drugs inhibit lens γ-crystallin aggregation: Potential role for cataract prevention
title_full_unstemmed α-Crystallin chaperone mimetic drugs inhibit lens γ-crystallin aggregation: Potential role for cataract prevention
title_short α-Crystallin chaperone mimetic drugs inhibit lens γ-crystallin aggregation: Potential role for cataract prevention
title_sort α-crystallin chaperone mimetic drugs inhibit lens γ-crystallin aggregation: potential role for cataract prevention
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9525908/
https://www.ncbi.nlm.nih.gov/pubmed/36037967
http://dx.doi.org/10.1016/j.jbc.2022.102417
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