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Unravelling the fibrillation mechanism of ovalbumin in the presence of mercury at its isoelectric pH

The intriguing resemblances of amyloid fibrils and spider silk in protein aggregation diseases have instigated the exploration of identical structural features if any in their oligomeric pathways. The serpin group protein, ovalbumin, on defolding in HgCl(2) shares commonness to the micellar pathway...

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Autores principales: Mathew, Manjumol, Aravindakumar, Charuvila T., Aravind, Usha K.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9052921/
https://www.ncbi.nlm.nih.gov/pubmed/35498851
http://dx.doi.org/10.1039/c9ra10655c
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author Mathew, Manjumol
Aravindakumar, Charuvila T.
Aravind, Usha K.
author_facet Mathew, Manjumol
Aravindakumar, Charuvila T.
Aravind, Usha K.
author_sort Mathew, Manjumol
collection PubMed
description The intriguing resemblances of amyloid fibrils and spider silk in protein aggregation diseases have instigated the exploration of identical structural features if any in their oligomeric pathways. The serpin group protein, ovalbumin, on defolding in HgCl(2) shares commonness to the micellar pathway of spidroins for their aggregation in response to a pH trigger. The structural feature changes from monomer to worm like fibril with a shift in the primary protein pH to slightly acidic pH (4.5), and then proceeds through a secondary nucleation pathway to ‘hillock’ and ‘hydra’ like protofibrils rich in β-sheet and random coil conformers upon exposure to mercury. The findings are backed by atomic force microscopy, confocal Raman spectroscopy and fluorescence measurements. Unlocking such structural features can favorably assist in the design of therapeutics.
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spelling pubmed-90529212022-04-29 Unravelling the fibrillation mechanism of ovalbumin in the presence of mercury at its isoelectric pH Mathew, Manjumol Aravindakumar, Charuvila T. Aravind, Usha K. RSC Adv Chemistry The intriguing resemblances of amyloid fibrils and spider silk in protein aggregation diseases have instigated the exploration of identical structural features if any in their oligomeric pathways. The serpin group protein, ovalbumin, on defolding in HgCl(2) shares commonness to the micellar pathway of spidroins for their aggregation in response to a pH trigger. The structural feature changes from monomer to worm like fibril with a shift in the primary protein pH to slightly acidic pH (4.5), and then proceeds through a secondary nucleation pathway to ‘hillock’ and ‘hydra’ like protofibrils rich in β-sheet and random coil conformers upon exposure to mercury. The findings are backed by atomic force microscopy, confocal Raman spectroscopy and fluorescence measurements. Unlocking such structural features can favorably assist in the design of therapeutics. The Royal Society of Chemistry 2020-04-24 /pmc/articles/PMC9052921/ /pubmed/35498851 http://dx.doi.org/10.1039/c9ra10655c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Mathew, Manjumol
Aravindakumar, Charuvila T.
Aravind, Usha K.
Unravelling the fibrillation mechanism of ovalbumin in the presence of mercury at its isoelectric pH
title Unravelling the fibrillation mechanism of ovalbumin in the presence of mercury at its isoelectric pH
title_full Unravelling the fibrillation mechanism of ovalbumin in the presence of mercury at its isoelectric pH
title_fullStr Unravelling the fibrillation mechanism of ovalbumin in the presence of mercury at its isoelectric pH
title_full_unstemmed Unravelling the fibrillation mechanism of ovalbumin in the presence of mercury at its isoelectric pH
title_short Unravelling the fibrillation mechanism of ovalbumin in the presence of mercury at its isoelectric pH
title_sort unravelling the fibrillation mechanism of ovalbumin in the presence of mercury at its isoelectric ph
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9052921/
https://www.ncbi.nlm.nih.gov/pubmed/35498851
http://dx.doi.org/10.1039/c9ra10655c
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