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Unravelling the effect of N(ε)-(carboxyethyl)lysine on the conformation, dynamics and aggregation propensity of α-synuclein

α-Synuclein (αS) aggregation is a hallmark in several neurodegenerative diseases. Among them, Parkinson's disease is highlighted, characterized by the intraneuronal deposition of Lewy bodies (LBs) which causes the loss of dopaminergic neurons. αS is the main component of LBs and in them, it usu...

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Autores principales: Mariño, Laura, Ramis, Rafael, Casasnovas, Rodrigo, Ortega-Castro, Joaquín, Vilanova, Bartolomé, Frau, Juan, Adrover, Miquel
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8157327/
https://www.ncbi.nlm.nih.gov/pubmed/34122841
http://dx.doi.org/10.1039/d0sc00906g
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author Mariño, Laura
Ramis, Rafael
Casasnovas, Rodrigo
Ortega-Castro, Joaquín
Vilanova, Bartolomé
Frau, Juan
Adrover, Miquel
author_facet Mariño, Laura
Ramis, Rafael
Casasnovas, Rodrigo
Ortega-Castro, Joaquín
Vilanova, Bartolomé
Frau, Juan
Adrover, Miquel
author_sort Mariño, Laura
collection PubMed
description α-Synuclein (αS) aggregation is a hallmark in several neurodegenerative diseases. Among them, Parkinson's disease is highlighted, characterized by the intraneuronal deposition of Lewy bodies (LBs) which causes the loss of dopaminergic neurons. αS is the main component of LBs and in them, it usually contains post-translational modifications. One of them is the formation of advanced glycation end-products (mainly CEL and MOLD) arising from its reaction with methylglyoxal. Despite its biological relevance, there are no data available proving the effect of glycation on the conformation of αS, nor on its aggregation mechanism. This has been hampered by the formation of a heterogeneous set of compounds that precluded conformational studies. To overcome this issue, we have here produced αS homogeneously glycated with CEL. Its use, together with different biophysical techniques and molecular dynamics simulations, allowed us to study for the first time the effect of glycation on the conformation of a protein. CEL extended the conformation of the N-terminal domain as a result of the loss of transient N-/C-terminal long-range contacts while increasing the heterogeneity of the conformational population. CEL also inhibited the αS aggregation, but it was not able to disassemble preexisting amyloid fibrils, thus proving that CEL found on LBs must be formed in a later event after aggregation.
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spelling pubmed-81573272021-06-11 Unravelling the effect of N(ε)-(carboxyethyl)lysine on the conformation, dynamics and aggregation propensity of α-synuclein Mariño, Laura Ramis, Rafael Casasnovas, Rodrigo Ortega-Castro, Joaquín Vilanova, Bartolomé Frau, Juan Adrover, Miquel Chem Sci Chemistry α-Synuclein (αS) aggregation is a hallmark in several neurodegenerative diseases. Among them, Parkinson's disease is highlighted, characterized by the intraneuronal deposition of Lewy bodies (LBs) which causes the loss of dopaminergic neurons. αS is the main component of LBs and in them, it usually contains post-translational modifications. One of them is the formation of advanced glycation end-products (mainly CEL and MOLD) arising from its reaction with methylglyoxal. Despite its biological relevance, there are no data available proving the effect of glycation on the conformation of αS, nor on its aggregation mechanism. This has been hampered by the formation of a heterogeneous set of compounds that precluded conformational studies. To overcome this issue, we have here produced αS homogeneously glycated with CEL. Its use, together with different biophysical techniques and molecular dynamics simulations, allowed us to study for the first time the effect of glycation on the conformation of a protein. CEL extended the conformation of the N-terminal domain as a result of the loss of transient N-/C-terminal long-range contacts while increasing the heterogeneity of the conformational population. CEL also inhibited the αS aggregation, but it was not able to disassemble preexisting amyloid fibrils, thus proving that CEL found on LBs must be formed in a later event after aggregation. The Royal Society of Chemistry 2020-03-10 /pmc/articles/PMC8157327/ /pubmed/34122841 http://dx.doi.org/10.1039/d0sc00906g Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Mariño, Laura
Ramis, Rafael
Casasnovas, Rodrigo
Ortega-Castro, Joaquín
Vilanova, Bartolomé
Frau, Juan
Adrover, Miquel
Unravelling the effect of N(ε)-(carboxyethyl)lysine on the conformation, dynamics and aggregation propensity of α-synuclein
title Unravelling the effect of N(ε)-(carboxyethyl)lysine on the conformation, dynamics and aggregation propensity of α-synuclein
title_full Unravelling the effect of N(ε)-(carboxyethyl)lysine on the conformation, dynamics and aggregation propensity of α-synuclein
title_fullStr Unravelling the effect of N(ε)-(carboxyethyl)lysine on the conformation, dynamics and aggregation propensity of α-synuclein
title_full_unstemmed Unravelling the effect of N(ε)-(carboxyethyl)lysine on the conformation, dynamics and aggregation propensity of α-synuclein
title_short Unravelling the effect of N(ε)-(carboxyethyl)lysine on the conformation, dynamics and aggregation propensity of α-synuclein
title_sort unravelling the effect of n(ε)-(carboxyethyl)lysine on the conformation, dynamics and aggregation propensity of α-synuclein
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8157327/
https://www.ncbi.nlm.nih.gov/pubmed/34122841
http://dx.doi.org/10.1039/d0sc00906g
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