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Pathological ATX3 Expression Induces Cell Perturbations in E. coli as Revealed by Biochemical and Biophysical Investigations

Amyloid aggregation of human ataxin-3 (ATX3) is responsible for spinocerebellar ataxia type 3, which belongs to the class of polyglutamine neurodegenerative disorders. It is widely accepted that the formation of toxic oligomeric species is primarily involved in the onset of the disease. For this rea...

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Autores principales: Ami, Diletta, Sciandrone, Barbara, Mereghetti, Paolo, Falvo, Jacopo, Catelani, Tiziano, Visentin, Cristina, Tortora, Paolo, Ventura, Salvador, Natalello, Antonino, Regonesi, Maria Elena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7835732/
https://www.ncbi.nlm.nih.gov/pubmed/33477953
http://dx.doi.org/10.3390/ijms22020943
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author Ami, Diletta
Sciandrone, Barbara
Mereghetti, Paolo
Falvo, Jacopo
Catelani, Tiziano
Visentin, Cristina
Tortora, Paolo
Ventura, Salvador
Natalello, Antonino
Regonesi, Maria Elena
author_facet Ami, Diletta
Sciandrone, Barbara
Mereghetti, Paolo
Falvo, Jacopo
Catelani, Tiziano
Visentin, Cristina
Tortora, Paolo
Ventura, Salvador
Natalello, Antonino
Regonesi, Maria Elena
author_sort Ami, Diletta
collection PubMed
description Amyloid aggregation of human ataxin-3 (ATX3) is responsible for spinocerebellar ataxia type 3, which belongs to the class of polyglutamine neurodegenerative disorders. It is widely accepted that the formation of toxic oligomeric species is primarily involved in the onset of the disease. For this reason, to understand the mechanisms underlying toxicity, we expressed both a physiological (ATX3-Q24) and a pathological ATX3 variant (ATX3-Q55) in a simplified cellular model, Escherichia coli. It has been observed that ATX3-Q55 expression induces a higher reduction of the cell growth compared to ATX3-Q24, due to the bacteriostatic effect of the toxic oligomeric species. Furthermore, the Fourier transform infrared microspectroscopy investigation, supported by multivariate analysis, made it possible to monitor protein aggregation and the induced cell perturbations in intact cells. In particular, it has been found that the toxic oligomeric species associated with the expression of ATX3-Q55 are responsible for the main spectral changes, ascribable mainly to the cell envelope modifications. A structural alteration of the membrane detected through electron microscopy analysis in the strain expressing the pathological form supports the spectroscopic results.
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spelling pubmed-78357322021-01-27 Pathological ATX3 Expression Induces Cell Perturbations in E. coli as Revealed by Biochemical and Biophysical Investigations Ami, Diletta Sciandrone, Barbara Mereghetti, Paolo Falvo, Jacopo Catelani, Tiziano Visentin, Cristina Tortora, Paolo Ventura, Salvador Natalello, Antonino Regonesi, Maria Elena Int J Mol Sci Article Amyloid aggregation of human ataxin-3 (ATX3) is responsible for spinocerebellar ataxia type 3, which belongs to the class of polyglutamine neurodegenerative disorders. It is widely accepted that the formation of toxic oligomeric species is primarily involved in the onset of the disease. For this reason, to understand the mechanisms underlying toxicity, we expressed both a physiological (ATX3-Q24) and a pathological ATX3 variant (ATX3-Q55) in a simplified cellular model, Escherichia coli. It has been observed that ATX3-Q55 expression induces a higher reduction of the cell growth compared to ATX3-Q24, due to the bacteriostatic effect of the toxic oligomeric species. Furthermore, the Fourier transform infrared microspectroscopy investigation, supported by multivariate analysis, made it possible to monitor protein aggregation and the induced cell perturbations in intact cells. In particular, it has been found that the toxic oligomeric species associated with the expression of ATX3-Q55 are responsible for the main spectral changes, ascribable mainly to the cell envelope modifications. A structural alteration of the membrane detected through electron microscopy analysis in the strain expressing the pathological form supports the spectroscopic results. MDPI 2021-01-19 /pmc/articles/PMC7835732/ /pubmed/33477953 http://dx.doi.org/10.3390/ijms22020943 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ami, Diletta
Sciandrone, Barbara
Mereghetti, Paolo
Falvo, Jacopo
Catelani, Tiziano
Visentin, Cristina
Tortora, Paolo
Ventura, Salvador
Natalello, Antonino
Regonesi, Maria Elena
Pathological ATX3 Expression Induces Cell Perturbations in E. coli as Revealed by Biochemical and Biophysical Investigations
title Pathological ATX3 Expression Induces Cell Perturbations in E. coli as Revealed by Biochemical and Biophysical Investigations
title_full Pathological ATX3 Expression Induces Cell Perturbations in E. coli as Revealed by Biochemical and Biophysical Investigations
title_fullStr Pathological ATX3 Expression Induces Cell Perturbations in E. coli as Revealed by Biochemical and Biophysical Investigations
title_full_unstemmed Pathological ATX3 Expression Induces Cell Perturbations in E. coli as Revealed by Biochemical and Biophysical Investigations
title_short Pathological ATX3 Expression Induces Cell Perturbations in E. coli as Revealed by Biochemical and Biophysical Investigations
title_sort pathological atx3 expression induces cell perturbations in e. coli as revealed by biochemical and biophysical investigations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7835732/
https://www.ncbi.nlm.nih.gov/pubmed/33477953
http://dx.doi.org/10.3390/ijms22020943
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