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SAA fibrils involved in AA amyloidosis are similar in bulk and by single particle reconstitution: A MAS solid-state NMR study

AA amyloidosis is one of the most prevalent forms of systemic amyloidosis and affects both humans and other vertebrates. In this study, we compare MAS solid-state NMR data with a recent cryo-EM study of fibrils involving full-length murine SAA1.1. We address the question whether the specific require...

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Autores principales: Sundaria, Arpita, Liberta, Falk, Savran, Dilan, Sarkar, Riddhiman, Rodina, Natalia, Peters, Carsten, Schwierz, Nadine, Haupt, Christian, Schmidt, Matthias, Reif, Bernd
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9340516/
https://www.ncbi.nlm.nih.gov/pubmed/35924280
http://dx.doi.org/10.1016/j.yjsbx.2022.100069
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author Sundaria, Arpita
Liberta, Falk
Savran, Dilan
Sarkar, Riddhiman
Rodina, Natalia
Peters, Carsten
Schwierz, Nadine
Haupt, Christian
Schmidt, Matthias
Reif, Bernd
author_facet Sundaria, Arpita
Liberta, Falk
Savran, Dilan
Sarkar, Riddhiman
Rodina, Natalia
Peters, Carsten
Schwierz, Nadine
Haupt, Christian
Schmidt, Matthias
Reif, Bernd
author_sort Sundaria, Arpita
collection PubMed
description AA amyloidosis is one of the most prevalent forms of systemic amyloidosis and affects both humans and other vertebrates. In this study, we compare MAS solid-state NMR data with a recent cryo-EM study of fibrils involving full-length murine SAA1.1. We address the question whether the specific requirements for the reconstitution of an amyloid fibril structure by cryo-EM can potentially yield a bias towards a particular fibril polymorph. We employ fibril seeds extracted from in to vivo material to imprint the fibril structure onto the biochemically produced protein. Sequential assignments yield the secondary structure elements in the fibril state. Long-range DARR and PAR experiments confirm largely the topology observed in the ex-vivo cryo-EM study. We find that the β-sheets identified in the NMR experiments are similar to the β-sheets found in the cryo-EM study, with the exception of amino acids 33–42. These residues cannot be assigned by solid-state NMR, while they adopt a stable β-sheet in the cryo-EM structure. We suggest that the differences between MAS solid-state NMR and cryo-EM data are a consequence of a second conformer involving residues 33–42. Moreover, we were able to characterize the dynamic C-terminal tail of SAA in the fibril state. The C-terminus is flexible, remains detached from the fibrils, and does not affect the SAA fibril structure as confirmed further by molecular dynamics simulations. As the C-terminus can potentially interact with other cellular components, binding to cellular targets can affect its accessibility for protease digestion.
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spelling pubmed-93405162022-08-02 SAA fibrils involved in AA amyloidosis are similar in bulk and by single particle reconstitution: A MAS solid-state NMR study Sundaria, Arpita Liberta, Falk Savran, Dilan Sarkar, Riddhiman Rodina, Natalia Peters, Carsten Schwierz, Nadine Haupt, Christian Schmidt, Matthias Reif, Bernd J Struct Biol X Advances in biomolecular structure and dynamics elucidation by solid-state NMR AA amyloidosis is one of the most prevalent forms of systemic amyloidosis and affects both humans and other vertebrates. In this study, we compare MAS solid-state NMR data with a recent cryo-EM study of fibrils involving full-length murine SAA1.1. We address the question whether the specific requirements for the reconstitution of an amyloid fibril structure by cryo-EM can potentially yield a bias towards a particular fibril polymorph. We employ fibril seeds extracted from in to vivo material to imprint the fibril structure onto the biochemically produced protein. Sequential assignments yield the secondary structure elements in the fibril state. Long-range DARR and PAR experiments confirm largely the topology observed in the ex-vivo cryo-EM study. We find that the β-sheets identified in the NMR experiments are similar to the β-sheets found in the cryo-EM study, with the exception of amino acids 33–42. These residues cannot be assigned by solid-state NMR, while they adopt a stable β-sheet in the cryo-EM structure. We suggest that the differences between MAS solid-state NMR and cryo-EM data are a consequence of a second conformer involving residues 33–42. Moreover, we were able to characterize the dynamic C-terminal tail of SAA in the fibril state. The C-terminus is flexible, remains detached from the fibrils, and does not affect the SAA fibril structure as confirmed further by molecular dynamics simulations. As the C-terminus can potentially interact with other cellular components, binding to cellular targets can affect its accessibility for protease digestion. Elsevier 2022-07-19 /pmc/articles/PMC9340516/ /pubmed/35924280 http://dx.doi.org/10.1016/j.yjsbx.2022.100069 Text en © 2022 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Advances in biomolecular structure and dynamics elucidation by solid-state NMR
Sundaria, Arpita
Liberta, Falk
Savran, Dilan
Sarkar, Riddhiman
Rodina, Natalia
Peters, Carsten
Schwierz, Nadine
Haupt, Christian
Schmidt, Matthias
Reif, Bernd
SAA fibrils involved in AA amyloidosis are similar in bulk and by single particle reconstitution: A MAS solid-state NMR study
title SAA fibrils involved in AA amyloidosis are similar in bulk and by single particle reconstitution: A MAS solid-state NMR study
title_full SAA fibrils involved in AA amyloidosis are similar in bulk and by single particle reconstitution: A MAS solid-state NMR study
title_fullStr SAA fibrils involved in AA amyloidosis are similar in bulk and by single particle reconstitution: A MAS solid-state NMR study
title_full_unstemmed SAA fibrils involved in AA amyloidosis are similar in bulk and by single particle reconstitution: A MAS solid-state NMR study
title_short SAA fibrils involved in AA amyloidosis are similar in bulk and by single particle reconstitution: A MAS solid-state NMR study
title_sort saa fibrils involved in aa amyloidosis are similar in bulk and by single particle reconstitution: a mas solid-state nmr study
topic Advances in biomolecular structure and dynamics elucidation by solid-state NMR
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9340516/
https://www.ncbi.nlm.nih.gov/pubmed/35924280
http://dx.doi.org/10.1016/j.yjsbx.2022.100069
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