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Hydrogen Sulfide Inhibits Amyloid Formation

[Image: see text] Amyloid fibrils are large aggregates of misfolded proteins, which are often associated with various neurodegenerative diseases such as Alzheimer’s, Parkinson’s, Huntington’s, and vascular dementia. The amount of hydrogen sulfide (H(2)S) is known to be significantly reduced in the b...

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Autores principales: Rosario-Alomar, Manuel F., Quiñones-Ruiz, Tatiana, Kurouski, Dmitry, Sereda, Valentin, Ferreira, Eduardo B., Jesús-Kim, Lorraine De, Hernández-Rivera, Samuel, Zagorevski, Dmitri V., López-Garriga, Juan, Lednev, Igor K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4315425/
https://www.ncbi.nlm.nih.gov/pubmed/25545790
http://dx.doi.org/10.1021/jp508471v
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author Rosario-Alomar, Manuel F.
Quiñones-Ruiz, Tatiana
Kurouski, Dmitry
Sereda, Valentin
Ferreira, Eduardo B.
Jesús-Kim, Lorraine De
Hernández-Rivera, Samuel
Zagorevski, Dmitri V.
López-Garriga, Juan
Lednev, Igor K.
author_facet Rosario-Alomar, Manuel F.
Quiñones-Ruiz, Tatiana
Kurouski, Dmitry
Sereda, Valentin
Ferreira, Eduardo B.
Jesús-Kim, Lorraine De
Hernández-Rivera, Samuel
Zagorevski, Dmitri V.
López-Garriga, Juan
Lednev, Igor K.
author_sort Rosario-Alomar, Manuel F.
collection PubMed
description [Image: see text] Amyloid fibrils are large aggregates of misfolded proteins, which are often associated with various neurodegenerative diseases such as Alzheimer’s, Parkinson’s, Huntington’s, and vascular dementia. The amount of hydrogen sulfide (H(2)S) is known to be significantly reduced in the brain tissue of people diagnosed with Alzheimer’s disease relative to that of healthy individuals. These findings prompted us to investigate the effects of H(2)S on the formation of amyloids in vitro using a model fibrillogenic protein hen egg white lysozyme (HEWL). HEWL forms typical β-sheet rich fibrils during the course of 70 min at low pH and high temperatures. The addition of H(2)S completely inhibits the formation of β-sheet and amyloid fibrils, as revealed by deep UV resonance Raman (DUVRR) spectroscopy and ThT fluorescence. Nonresonance Raman spectroscopy shows that disulfide bonds undergo significant rearrangements in the presence of H(2)S. Raman bands corresponding to disulfide (RSSR) vibrational modes in the 550–500 cm(–1) spectral range decrease in intensity and are accompanied by the appearance of a new 490 cm(–1) band assigned to the trisulfide group (RSSSR) based on the comparison with model compounds. The formation of RSSSR was proven further using a reaction with TCEP reduction agent and LC-MS analysis of the products. Intrinsic tryptophan fluorescence study shows a strong denaturation of HEWL containing trisulfide bonds. The presented evidence indicates that H(2)S causes the formation of trisulfide bridges, which destabilizes HEWL structure, preventing protein fibrillation. As a result, small spherical aggregates of unordered protein form, which exhibit no cytotoxicity by contrast with HEWL fibrils.
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spelling pubmed-43154252015-12-29 Hydrogen Sulfide Inhibits Amyloid Formation Rosario-Alomar, Manuel F. Quiñones-Ruiz, Tatiana Kurouski, Dmitry Sereda, Valentin Ferreira, Eduardo B. Jesús-Kim, Lorraine De Hernández-Rivera, Samuel Zagorevski, Dmitri V. López-Garriga, Juan Lednev, Igor K. J Phys Chem B [Image: see text] Amyloid fibrils are large aggregates of misfolded proteins, which are often associated with various neurodegenerative diseases such as Alzheimer’s, Parkinson’s, Huntington’s, and vascular dementia. The amount of hydrogen sulfide (H(2)S) is known to be significantly reduced in the brain tissue of people diagnosed with Alzheimer’s disease relative to that of healthy individuals. These findings prompted us to investigate the effects of H(2)S on the formation of amyloids in vitro using a model fibrillogenic protein hen egg white lysozyme (HEWL). HEWL forms typical β-sheet rich fibrils during the course of 70 min at low pH and high temperatures. The addition of H(2)S completely inhibits the formation of β-sheet and amyloid fibrils, as revealed by deep UV resonance Raman (DUVRR) spectroscopy and ThT fluorescence. Nonresonance Raman spectroscopy shows that disulfide bonds undergo significant rearrangements in the presence of H(2)S. Raman bands corresponding to disulfide (RSSR) vibrational modes in the 550–500 cm(–1) spectral range decrease in intensity and are accompanied by the appearance of a new 490 cm(–1) band assigned to the trisulfide group (RSSSR) based on the comparison with model compounds. The formation of RSSSR was proven further using a reaction with TCEP reduction agent and LC-MS analysis of the products. Intrinsic tryptophan fluorescence study shows a strong denaturation of HEWL containing trisulfide bonds. The presented evidence indicates that H(2)S causes the formation of trisulfide bridges, which destabilizes HEWL structure, preventing protein fibrillation. As a result, small spherical aggregates of unordered protein form, which exhibit no cytotoxicity by contrast with HEWL fibrils. American Chemical Society 2014-12-29 2015-01-29 /pmc/articles/PMC4315425/ /pubmed/25545790 http://dx.doi.org/10.1021/jp508471v Text en Copyright © 2014 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Rosario-Alomar, Manuel F.
Quiñones-Ruiz, Tatiana
Kurouski, Dmitry
Sereda, Valentin
Ferreira, Eduardo B.
Jesús-Kim, Lorraine De
Hernández-Rivera, Samuel
Zagorevski, Dmitri V.
López-Garriga, Juan
Lednev, Igor K.
Hydrogen Sulfide Inhibits Amyloid Formation
title Hydrogen Sulfide Inhibits Amyloid Formation
title_full Hydrogen Sulfide Inhibits Amyloid Formation
title_fullStr Hydrogen Sulfide Inhibits Amyloid Formation
title_full_unstemmed Hydrogen Sulfide Inhibits Amyloid Formation
title_short Hydrogen Sulfide Inhibits Amyloid Formation
title_sort hydrogen sulfide inhibits amyloid formation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4315425/
https://www.ncbi.nlm.nih.gov/pubmed/25545790
http://dx.doi.org/10.1021/jp508471v
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