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Mass spectrometry characterization of light chain fragmentation sites in cardiac AL amyloidosis: insights into the timing of proteolysis

Amyloid fibrils are polymeric structures originating from aggregation of misfolded proteins. In vivo, proteolysis may modulate amyloidogenesis and fibril stability. In light chain (AL) amyloidosis, fragmented light chains (LCs) are abundant components of amyloid deposits; however, site and timing of...

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Autores principales: Lavatelli, Francesca, Mazzini, Giulia, Ricagno, Stefano, Iavarone, Federica, Rognoni, Paola, Milani, Paolo, Nuvolone, Mario, Swuec, Paolo, Caminito, Serena, Tasaki, Masayoshi, Chaves-Sanjuan, Antonio, Urbani, Andrea, Merlini, Giampaolo, Palladini, Giovanni
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7864057/
https://www.ncbi.nlm.nih.gov/pubmed/32952127
http://dx.doi.org/10.1074/jbc.RA120.013461
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author Lavatelli, Francesca
Mazzini, Giulia
Ricagno, Stefano
Iavarone, Federica
Rognoni, Paola
Milani, Paolo
Nuvolone, Mario
Swuec, Paolo
Caminito, Serena
Tasaki, Masayoshi
Chaves-Sanjuan, Antonio
Urbani, Andrea
Merlini, Giampaolo
Palladini, Giovanni
author_facet Lavatelli, Francesca
Mazzini, Giulia
Ricagno, Stefano
Iavarone, Federica
Rognoni, Paola
Milani, Paolo
Nuvolone, Mario
Swuec, Paolo
Caminito, Serena
Tasaki, Masayoshi
Chaves-Sanjuan, Antonio
Urbani, Andrea
Merlini, Giampaolo
Palladini, Giovanni
author_sort Lavatelli, Francesca
collection PubMed
description Amyloid fibrils are polymeric structures originating from aggregation of misfolded proteins. In vivo, proteolysis may modulate amyloidogenesis and fibril stability. In light chain (AL) amyloidosis, fragmented light chains (LCs) are abundant components of amyloid deposits; however, site and timing of proteolysis are debated. Identification of the N and C termini of LC fragments is instrumental to understanding involved processes and enzymes. We investigated the N and C terminome of the LC proteoforms in fibrils extracted from the hearts of two AL cardiomyopathy patients, using a proteomic approach based on derivatization of N- and C-terminal residues, followed by mapping of fragmentation sites on the structures of native and fibrillar relevant LCs. We provide the first high-specificity map of proteolytic cleavages in natural AL amyloid. Proteolysis occurs both on the LC variable and constant domains, generating a complex fragmentation pattern. The structural analysis indicates extensive remodeling by multiple proteases, largely taking place on poorly folded regions of the fibril surfaces. This study adds novel important knowledge on amyloid LC processing: although our data do not exclude that proteolysis of native LC dimers may destabilize their structure and favor fibril formation, the data show that LC deposition largely precedes the proteolytic events documentable in mature AL fibrils.
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spelling pubmed-78640572021-06-10 Mass spectrometry characterization of light chain fragmentation sites in cardiac AL amyloidosis: insights into the timing of proteolysis Lavatelli, Francesca Mazzini, Giulia Ricagno, Stefano Iavarone, Federica Rognoni, Paola Milani, Paolo Nuvolone, Mario Swuec, Paolo Caminito, Serena Tasaki, Masayoshi Chaves-Sanjuan, Antonio Urbani, Andrea Merlini, Giampaolo Palladini, Giovanni J Biol Chem Protein Structure and Folding Amyloid fibrils are polymeric structures originating from aggregation of misfolded proteins. In vivo, proteolysis may modulate amyloidogenesis and fibril stability. In light chain (AL) amyloidosis, fragmented light chains (LCs) are abundant components of amyloid deposits; however, site and timing of proteolysis are debated. Identification of the N and C termini of LC fragments is instrumental to understanding involved processes and enzymes. We investigated the N and C terminome of the LC proteoforms in fibrils extracted from the hearts of two AL cardiomyopathy patients, using a proteomic approach based on derivatization of N- and C-terminal residues, followed by mapping of fragmentation sites on the structures of native and fibrillar relevant LCs. We provide the first high-specificity map of proteolytic cleavages in natural AL amyloid. Proteolysis occurs both on the LC variable and constant domains, generating a complex fragmentation pattern. The structural analysis indicates extensive remodeling by multiple proteases, largely taking place on poorly folded regions of the fibril surfaces. This study adds novel important knowledge on amyloid LC processing: although our data do not exclude that proteolysis of native LC dimers may destabilize their structure and favor fibril formation, the data show that LC deposition largely precedes the proteolytic events documentable in mature AL fibrils. American Society for Biochemistry and Molecular Biology 2021-01-13 /pmc/articles/PMC7864057/ /pubmed/32952127 http://dx.doi.org/10.1074/jbc.RA120.013461 Text en © 2020 © 2020 Lavatelli et al. 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 Protein Structure and Folding
Lavatelli, Francesca
Mazzini, Giulia
Ricagno, Stefano
Iavarone, Federica
Rognoni, Paola
Milani, Paolo
Nuvolone, Mario
Swuec, Paolo
Caminito, Serena
Tasaki, Masayoshi
Chaves-Sanjuan, Antonio
Urbani, Andrea
Merlini, Giampaolo
Palladini, Giovanni
Mass spectrometry characterization of light chain fragmentation sites in cardiac AL amyloidosis: insights into the timing of proteolysis
title Mass spectrometry characterization of light chain fragmentation sites in cardiac AL amyloidosis: insights into the timing of proteolysis
title_full Mass spectrometry characterization of light chain fragmentation sites in cardiac AL amyloidosis: insights into the timing of proteolysis
title_fullStr Mass spectrometry characterization of light chain fragmentation sites in cardiac AL amyloidosis: insights into the timing of proteolysis
title_full_unstemmed Mass spectrometry characterization of light chain fragmentation sites in cardiac AL amyloidosis: insights into the timing of proteolysis
title_short Mass spectrometry characterization of light chain fragmentation sites in cardiac AL amyloidosis: insights into the timing of proteolysis
title_sort mass spectrometry characterization of light chain fragmentation sites in cardiac al amyloidosis: insights into the timing of proteolysis
topic Protein Structure and Folding
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7864057/
https://www.ncbi.nlm.nih.gov/pubmed/32952127
http://dx.doi.org/10.1074/jbc.RA120.013461
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