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Comparative Analysis of Human γD-Crystallin Aggregation under Physiological and Low pH Conditions

Cataract, a major cause of visual impairment worldwide, is the opacification of the eye’s crystalline lens due to aggregation of the crystallin proteins. The research reported here is aimed at investigating the aggregating behavior of γ-crystallin proteins in various incubation conditions. Thioflavi...

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Autores principales: Wu, Josephine W., Chen, Mei-Er, Wen, Wen-Sing, Chen, Wei-An, Li, Chien-Ting, Chang, Chih-Kai, Lo, Chun-Hsien, Liu, Hwai-Shen, Wang, Steven S.-S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4229192/
https://www.ncbi.nlm.nih.gov/pubmed/25389780
http://dx.doi.org/10.1371/journal.pone.0112309
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author Wu, Josephine W.
Chen, Mei-Er
Wen, Wen-Sing
Chen, Wei-An
Li, Chien-Ting
Chang, Chih-Kai
Lo, Chun-Hsien
Liu, Hwai-Shen
Wang, Steven S.-S.
author_facet Wu, Josephine W.
Chen, Mei-Er
Wen, Wen-Sing
Chen, Wei-An
Li, Chien-Ting
Chang, Chih-Kai
Lo, Chun-Hsien
Liu, Hwai-Shen
Wang, Steven S.-S.
author_sort Wu, Josephine W.
collection PubMed
description Cataract, a major cause of visual impairment worldwide, is the opacification of the eye’s crystalline lens due to aggregation of the crystallin proteins. The research reported here is aimed at investigating the aggregating behavior of γ-crystallin proteins in various incubation conditions. Thioflavin T binding assay, circular dichroism spectroscopy, 1-anilinonaphthalene-8-sulfonic acid fluorescence spectroscopy, intrinsic (tryptophan) fluorescence spectroscopy, light scattering, and electron microscopy were used for structural characterization. Molecular dynamics simulations and bioinformatics prediction were performed to gain insights into the γD-crystallin mechanisms of fibrillogenesis. We first demonstrated that, except at pH 7.0 and 37°C, the aggregation of γD-crystallin was observed to be augmented upon incubation, as revealed by turbidity measurements. Next, the types of aggregates (fibrillar or non-fibrillar aggregates) formed under different incubation conditions were identified. We found that, while a variety of non-fibrillar, granular species were detected in the sample incubated under pH 7.0, the fibrillogenesis of human γD-crystallin could be induced by acidic pH (pH 2.0). In addition, circular dichroism spectroscopy, 1-anilinonaphthalene-8-sulfonic acid fluorescence spectroscopy, and intrinsic fluorescence spectroscopy were used to characterize the structural and conformational features in different incubation conditions. Our results suggested that incubation under acidic condition led to a considerable change in the secondary structure and an enhancement in solvent-exposure of the hydrophobic regions of human γD-crystallin. Finally, molecular dynamics simulations and bioinformatics prediction were performed to better explain the differences between the structures and/or conformations of the human γD-crystallin samples and to reveal potential key protein region involved in the varied aggregation behavior. Bioinformatics analyses revealed that the initiation of amyloid formation of human γD-crystallin may be associated with a region within the C-terminal domain. We believe the results from this research may contribute to a better understanding of the possible mechanisms underlying the pathogenesis of senile nuclear cataract.
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spelling pubmed-42291922014-11-18 Comparative Analysis of Human γD-Crystallin Aggregation under Physiological and Low pH Conditions Wu, Josephine W. Chen, Mei-Er Wen, Wen-Sing Chen, Wei-An Li, Chien-Ting Chang, Chih-Kai Lo, Chun-Hsien Liu, Hwai-Shen Wang, Steven S.-S. PLoS One Research Article Cataract, a major cause of visual impairment worldwide, is the opacification of the eye’s crystalline lens due to aggregation of the crystallin proteins. The research reported here is aimed at investigating the aggregating behavior of γ-crystallin proteins in various incubation conditions. Thioflavin T binding assay, circular dichroism spectroscopy, 1-anilinonaphthalene-8-sulfonic acid fluorescence spectroscopy, intrinsic (tryptophan) fluorescence spectroscopy, light scattering, and electron microscopy were used for structural characterization. Molecular dynamics simulations and bioinformatics prediction were performed to gain insights into the γD-crystallin mechanisms of fibrillogenesis. We first demonstrated that, except at pH 7.0 and 37°C, the aggregation of γD-crystallin was observed to be augmented upon incubation, as revealed by turbidity measurements. Next, the types of aggregates (fibrillar or non-fibrillar aggregates) formed under different incubation conditions were identified. We found that, while a variety of non-fibrillar, granular species were detected in the sample incubated under pH 7.0, the fibrillogenesis of human γD-crystallin could be induced by acidic pH (pH 2.0). In addition, circular dichroism spectroscopy, 1-anilinonaphthalene-8-sulfonic acid fluorescence spectroscopy, and intrinsic fluorescence spectroscopy were used to characterize the structural and conformational features in different incubation conditions. Our results suggested that incubation under acidic condition led to a considerable change in the secondary structure and an enhancement in solvent-exposure of the hydrophobic regions of human γD-crystallin. Finally, molecular dynamics simulations and bioinformatics prediction were performed to better explain the differences between the structures and/or conformations of the human γD-crystallin samples and to reveal potential key protein region involved in the varied aggregation behavior. Bioinformatics analyses revealed that the initiation of amyloid formation of human γD-crystallin may be associated with a region within the C-terminal domain. We believe the results from this research may contribute to a better understanding of the possible mechanisms underlying the pathogenesis of senile nuclear cataract. Public Library of Science 2014-11-12 /pmc/articles/PMC4229192/ /pubmed/25389780 http://dx.doi.org/10.1371/journal.pone.0112309 Text en © 2014 Wu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Wu, Josephine W.
Chen, Mei-Er
Wen, Wen-Sing
Chen, Wei-An
Li, Chien-Ting
Chang, Chih-Kai
Lo, Chun-Hsien
Liu, Hwai-Shen
Wang, Steven S.-S.
Comparative Analysis of Human γD-Crystallin Aggregation under Physiological and Low pH Conditions
title Comparative Analysis of Human γD-Crystallin Aggregation under Physiological and Low pH Conditions
title_full Comparative Analysis of Human γD-Crystallin Aggregation under Physiological and Low pH Conditions
title_fullStr Comparative Analysis of Human γD-Crystallin Aggregation under Physiological and Low pH Conditions
title_full_unstemmed Comparative Analysis of Human γD-Crystallin Aggregation under Physiological and Low pH Conditions
title_short Comparative Analysis of Human γD-Crystallin Aggregation under Physiological and Low pH Conditions
title_sort comparative analysis of human γd-crystallin aggregation under physiological and low ph conditions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4229192/
https://www.ncbi.nlm.nih.gov/pubmed/25389780
http://dx.doi.org/10.1371/journal.pone.0112309
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