Insights into a Protein-Nanoparticle System by Paramagnetic Perturbation NMR Spectroscopy
Background: The interaction between proteins and nanoparticles is a very relevant subject because of the potential applications in medicine and material science in general. Further interest derives from the amyloidogenic character of the considered protein, β2-microglobulin (β2m), which may be regar...
Main Authors: | , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
MDPI AG
2020-11-01
|
Series: | Molecules |
Subjects: | |
Online Access: | https://www.mdpi.com/1420-3049/25/21/5187 |
id |
doaj-c07d3cc2588348b3af1c2ab9b838e43d |
---|---|
record_format |
Article |
spelling |
doaj-c07d3cc2588348b3af1c2ab9b838e43d2020-11-25T04:02:46ZengMDPI AGMolecules1420-30492020-11-01255187518710.3390/molecules25215187Insights into a Protein-Nanoparticle System by Paramagnetic Perturbation NMR SpectroscopyYamanappa Hunashal0Cristina Cantarutti1Sofia Giorgetti2Loredana Marchese3Federico Fogolari4Gennaro Esposito5Science Division, New York University Abu Dhabi, 129188 Abu Dhabi, UAEInstitute de Chimie, UMR CNRS 7272, Université Côte d’Azur, Université de Nice Sophia Antipolis, Parc Valrose, 06108 Nice, CEDEX 2, FranceDipartimento Medicina Molecolare, Università di Pavia, Via Taramelli 3, 27100 Pavia, ItalyDipartimento Medicina Molecolare, Università di Pavia, Via Taramelli 3, 27100 Pavia, ItalyDipartimento di Matematica, Informatica e Fisica, Università di Udine, Viale delle Scienze, 33100 Udine, ItalyScience Division, New York University Abu Dhabi, 129188 Abu Dhabi, UAEBackground: The interaction between proteins and nanoparticles is a very relevant subject because of the potential applications in medicine and material science in general. Further interest derives from the amyloidogenic character of the considered protein, β2-microglobulin (β2m), which may be regarded as a paradigmatic system for possible therapeutic strategies. Previous evidence showed in fact that gold nanoparticles (AuNPs) are able to inhibit β2m fibril formation in vitro. Methods: NMR (Nuclear Magnetic Resonance) and ESR (Electron Spin Resonance) spectroscopy are employed to characterize the paramagnetic perturbation of the extrinsic nitroxide probe Tempol on β2m in the absence and presence of AuNPs to determine the surface accessibility properties and the occurrence of chemical or conformational exchange, based on measurements conducted under magnetization equilibrium and non-equilibrium conditions. Results: The nitroxide perturbation analysis successfully identifies the protein regions where protein-protein or protein-AuNPs interactions hinder accessibility or/and establish exchange contacts. These information give interesting clues to recognize the fibrillation interface of β2m and hypothesize a mechanism for AuNPs fibrillogenesis inhibition. Conclusions: The presented approach can be advantageously applied to the characterization of the interface in protein-protein and protein-nanoparticles interactions.https://www.mdpi.com/1420-3049/25/21/5187protein-nanoparticle interactionsprotein NMRamyloidogenic proteinsnitroxide paramagnetic perturbationspin label extrinsic probesTempol |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yamanappa Hunashal Cristina Cantarutti Sofia Giorgetti Loredana Marchese Federico Fogolari Gennaro Esposito |
spellingShingle |
Yamanappa Hunashal Cristina Cantarutti Sofia Giorgetti Loredana Marchese Federico Fogolari Gennaro Esposito Insights into a Protein-Nanoparticle System by Paramagnetic Perturbation NMR Spectroscopy Molecules protein-nanoparticle interactions protein NMR amyloidogenic proteins nitroxide paramagnetic perturbation spin label extrinsic probes Tempol |
author_facet |
Yamanappa Hunashal Cristina Cantarutti Sofia Giorgetti Loredana Marchese Federico Fogolari Gennaro Esposito |
author_sort |
Yamanappa Hunashal |
title |
Insights into a Protein-Nanoparticle System by Paramagnetic Perturbation NMR Spectroscopy |
title_short |
Insights into a Protein-Nanoparticle System by Paramagnetic Perturbation NMR Spectroscopy |
title_full |
Insights into a Protein-Nanoparticle System by Paramagnetic Perturbation NMR Spectroscopy |
title_fullStr |
Insights into a Protein-Nanoparticle System by Paramagnetic Perturbation NMR Spectroscopy |
title_full_unstemmed |
Insights into a Protein-Nanoparticle System by Paramagnetic Perturbation NMR Spectroscopy |
title_sort |
insights into a protein-nanoparticle system by paramagnetic perturbation nmr spectroscopy |
publisher |
MDPI AG |
series |
Molecules |
issn |
1420-3049 |
publishDate |
2020-11-01 |
description |
Background: The interaction between proteins and nanoparticles is a very relevant subject because of the potential applications in medicine and material science in general. Further interest derives from the amyloidogenic character of the considered protein, β2-microglobulin (β2m), which may be regarded as a paradigmatic system for possible therapeutic strategies. Previous evidence showed in fact that gold nanoparticles (AuNPs) are able to inhibit β2m fibril formation in vitro. Methods: NMR (Nuclear Magnetic Resonance) and ESR (Electron Spin Resonance) spectroscopy are employed to characterize the paramagnetic perturbation of the extrinsic nitroxide probe Tempol on β2m in the absence and presence of AuNPs to determine the surface accessibility properties and the occurrence of chemical or conformational exchange, based on measurements conducted under magnetization equilibrium and non-equilibrium conditions. Results: The nitroxide perturbation analysis successfully identifies the protein regions where protein-protein or protein-AuNPs interactions hinder accessibility or/and establish exchange contacts. These information give interesting clues to recognize the fibrillation interface of β2m and hypothesize a mechanism for AuNPs fibrillogenesis inhibition. Conclusions: The presented approach can be advantageously applied to the characterization of the interface in protein-protein and protein-nanoparticles interactions. |
topic |
protein-nanoparticle interactions protein NMR amyloidogenic proteins nitroxide paramagnetic perturbation spin label extrinsic probes Tempol |
url |
https://www.mdpi.com/1420-3049/25/21/5187 |
work_keys_str_mv |
AT yamanappahunashal insightsintoaproteinnanoparticlesystembyparamagneticperturbationnmrspectroscopy AT cristinacantarutti insightsintoaproteinnanoparticlesystembyparamagneticperturbationnmrspectroscopy AT sofiagiorgetti insightsintoaproteinnanoparticlesystembyparamagneticperturbationnmrspectroscopy AT loredanamarchese insightsintoaproteinnanoparticlesystembyparamagneticperturbationnmrspectroscopy AT federicofogolari insightsintoaproteinnanoparticlesystembyparamagneticperturbationnmrspectroscopy AT gennaroesposito insightsintoaproteinnanoparticlesystembyparamagneticperturbationnmrspectroscopy |
_version_ |
1724442361327517696 |