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Templating S100A9 amyloids on Aβ fibrillar surfaces revealed by charge detection mass spectrometry, microscopy, kinetic and microfluidic analyses
The mechanism of amyloid co-aggregation and its nucleation process are not fully understood in spite of extensive studies. Deciphering the interactions between proinflammatory S100A9 protein and Aβ(42) peptide in Alzheimer's disease is fundamental since inflammation plays a central role in the...
Autores principales: | , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
The Royal Society of Chemistry
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8159403/ https://www.ncbi.nlm.nih.gov/pubmed/34122996 http://dx.doi.org/10.1039/c9sc05905a |
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author | Pansieri, Jonathan Iashchishyn, Igor A. Fakhouri, Hussein Ostojić, Lucija Malisauskas, Mantas Musteikyte, Greta Smirnovas, Vytautas Schneider, Matthias M. Scheidt, Tom Xu, Catherine K. Meisl, Georg Knowles, Tuomas P. J. Gazit, Ehud Antoine, Rodolphe Morozova-Roche, Ludmilla A. |
author_facet | Pansieri, Jonathan Iashchishyn, Igor A. Fakhouri, Hussein Ostojić, Lucija Malisauskas, Mantas Musteikyte, Greta Smirnovas, Vytautas Schneider, Matthias M. Scheidt, Tom Xu, Catherine K. Meisl, Georg Knowles, Tuomas P. J. Gazit, Ehud Antoine, Rodolphe Morozova-Roche, Ludmilla A. |
author_sort | Pansieri, Jonathan |
collection | PubMed |
description | The mechanism of amyloid co-aggregation and its nucleation process are not fully understood in spite of extensive studies. Deciphering the interactions between proinflammatory S100A9 protein and Aβ(42) peptide in Alzheimer's disease is fundamental since inflammation plays a central role in the disease onset. Here we use innovative charge detection mass spectrometry (CDMS) together with biophysical techniques to provide mechanistic insight into the co-aggregation process and differentiate amyloid complexes at a single particle level. Combination of mass and charge distributions of amyloids together with reconstruction of the differences between them and detailed microscopy reveals that co-aggregation involves templating of S100A9 fibrils on the surface of Aβ(42) amyloids. Kinetic analysis further corroborates that the surfaces available for the Aβ(42) secondary nucleation are diminished due to the coating by S100A9 amyloids, while the binding of S100A9 to Aβ(42) fibrils is validated by a microfluidic assay. We demonstrate that synergy between CDMS, microscopy, kinetic and microfluidic analyses opens new directions in interdisciplinary research. |
format | Online Article Text |
id | pubmed-8159403 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | The Royal Society of Chemistry |
record_format | MEDLINE/PubMed |
spelling | pubmed-81594032021-06-11 Templating S100A9 amyloids on Aβ fibrillar surfaces revealed by charge detection mass spectrometry, microscopy, kinetic and microfluidic analyses Pansieri, Jonathan Iashchishyn, Igor A. Fakhouri, Hussein Ostojić, Lucija Malisauskas, Mantas Musteikyte, Greta Smirnovas, Vytautas Schneider, Matthias M. Scheidt, Tom Xu, Catherine K. Meisl, Georg Knowles, Tuomas P. J. Gazit, Ehud Antoine, Rodolphe Morozova-Roche, Ludmilla A. Chem Sci Chemistry The mechanism of amyloid co-aggregation and its nucleation process are not fully understood in spite of extensive studies. Deciphering the interactions between proinflammatory S100A9 protein and Aβ(42) peptide in Alzheimer's disease is fundamental since inflammation plays a central role in the disease onset. Here we use innovative charge detection mass spectrometry (CDMS) together with biophysical techniques to provide mechanistic insight into the co-aggregation process and differentiate amyloid complexes at a single particle level. Combination of mass and charge distributions of amyloids together with reconstruction of the differences between them and detailed microscopy reveals that co-aggregation involves templating of S100A9 fibrils on the surface of Aβ(42) amyloids. Kinetic analysis further corroborates that the surfaces available for the Aβ(42) secondary nucleation are diminished due to the coating by S100A9 amyloids, while the binding of S100A9 to Aβ(42) fibrils is validated by a microfluidic assay. We demonstrate that synergy between CDMS, microscopy, kinetic and microfluidic analyses opens new directions in interdisciplinary research. The Royal Society of Chemistry 2020-06-17 /pmc/articles/PMC8159403/ /pubmed/34122996 http://dx.doi.org/10.1039/c9sc05905a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Pansieri, Jonathan Iashchishyn, Igor A. Fakhouri, Hussein Ostojić, Lucija Malisauskas, Mantas Musteikyte, Greta Smirnovas, Vytautas Schneider, Matthias M. Scheidt, Tom Xu, Catherine K. Meisl, Georg Knowles, Tuomas P. J. Gazit, Ehud Antoine, Rodolphe Morozova-Roche, Ludmilla A. Templating S100A9 amyloids on Aβ fibrillar surfaces revealed by charge detection mass spectrometry, microscopy, kinetic and microfluidic analyses |
title | Templating S100A9 amyloids on Aβ fibrillar surfaces revealed by charge detection mass spectrometry, microscopy, kinetic and microfluidic analyses |
title_full | Templating S100A9 amyloids on Aβ fibrillar surfaces revealed by charge detection mass spectrometry, microscopy, kinetic and microfluidic analyses |
title_fullStr | Templating S100A9 amyloids on Aβ fibrillar surfaces revealed by charge detection mass spectrometry, microscopy, kinetic and microfluidic analyses |
title_full_unstemmed | Templating S100A9 amyloids on Aβ fibrillar surfaces revealed by charge detection mass spectrometry, microscopy, kinetic and microfluidic analyses |
title_short | Templating S100A9 amyloids on Aβ fibrillar surfaces revealed by charge detection mass spectrometry, microscopy, kinetic and microfluidic analyses |
title_sort | templating s100a9 amyloids on aβ fibrillar surfaces revealed by charge detection mass spectrometry, microscopy, kinetic and microfluidic analyses |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8159403/ https://www.ncbi.nlm.nih.gov/pubmed/34122996 http://dx.doi.org/10.1039/c9sc05905a |
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