Elevated temperatures accelerate the formation of toxic amyloid fibrils of hen egg‐white lysozyme

Abstract The formation of amyloid fibrils is critical for neurodegenerative diseases. Some physiochemical conditions can promote the conversion of proteins from soluble globular shapes into insoluble well‐organized amyloid fibrils. The aim of this study was to investigate the effect of temperatures...

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Main Authors: Zili Feng, Ying Li, Yu Bai
Format: Article
Language:English
Published: Wiley 2021-09-01
Series:Veterinary Medicine and Science
Subjects:
Online Access:https://doi.org/10.1002/vms3.522
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spelling doaj-8a2ccb5d686446a3bc12ba07fade5d612021-09-25T16:20:32ZengWileyVeterinary Medicine and Science2053-10952021-09-01751938194710.1002/vms3.522Elevated temperatures accelerate the formation of toxic amyloid fibrils of hen egg‐white lysozymeZili Feng0Ying Li1Yu Bai2School of Biological Science and Engineering Shaanxi University of Technology Hanzhong P.R. ChinaSchool of Biological Science and Engineering Shaanxi University of Technology Hanzhong P.R. ChinaSchool of Biological Science and Engineering Shaanxi University of Technology Hanzhong P.R. ChinaAbstract The formation of amyloid fibrils is critical for neurodegenerative diseases. Some physiochemical conditions can promote the conversion of proteins from soluble globular shapes into insoluble well‐organized amyloid fibrils. The aim of this study was to investigate the effect of temperatures on amyloid fibrils formation in vitro using the protein model of hen egg‐white lysozyme (HEWL). The HEWL fibrils were prepared at temperatures of 37, 45, 50 and 57°C in glycine solution of pH 2.2. Under transmission electron microscopy, we found the well‐organized HEWL amyloid fibrils at temperatures of 45, 50 and 57°C after 10 days of incubation. Thioflavin T and Congo red florescence assays confirmed that the formation and growth of HEWL fibrils displayed a temperature‐dependent increase, and 57°C produced the most amounts. Meanwhile, the surface hydrophobicity of aggregates was greatly increased by ANS binding assay, and β‐sheet contents by circular dichroism analysis were increased by 17.8%, 22.0% and 34.9%, respectively. Furthermore, the HEWL fibrils formed at 57°C caused significant cytotoxicity in SH‐SY5Y cells after 48 hr exposure, and the cell viability determined by MTT assay was decreased, with 81.35 ± 0.29% for 1 μM, 61.45 ± 2.62% for 2 μM, and 11.58 ± 0.39% (p < .01) for 3 μM. Nuclear staining results also confirmed the apoptosis features. These results suggest that the elevated temperatures could accelerate protein unfolding of the native structure and formation of toxic amyloid fibrils, which can improve understanding the mechanisms of the unfolding and misfolding process of prion protein.https://doi.org/10.1002/vms3.522amyloid fibrilselevated temperatureshen egg‐white lysozymeprionprotein unfolding
collection DOAJ
language English
format Article
sources DOAJ
author Zili Feng
Ying Li
Yu Bai
spellingShingle Zili Feng
Ying Li
Yu Bai
Elevated temperatures accelerate the formation of toxic amyloid fibrils of hen egg‐white lysozyme
Veterinary Medicine and Science
amyloid fibrils
elevated temperatures
hen egg‐white lysozyme
prion
protein unfolding
author_facet Zili Feng
Ying Li
Yu Bai
author_sort Zili Feng
title Elevated temperatures accelerate the formation of toxic amyloid fibrils of hen egg‐white lysozyme
title_short Elevated temperatures accelerate the formation of toxic amyloid fibrils of hen egg‐white lysozyme
title_full Elevated temperatures accelerate the formation of toxic amyloid fibrils of hen egg‐white lysozyme
title_fullStr Elevated temperatures accelerate the formation of toxic amyloid fibrils of hen egg‐white lysozyme
title_full_unstemmed Elevated temperatures accelerate the formation of toxic amyloid fibrils of hen egg‐white lysozyme
title_sort elevated temperatures accelerate the formation of toxic amyloid fibrils of hen egg‐white lysozyme
publisher Wiley
series Veterinary Medicine and Science
issn 2053-1095
publishDate 2021-09-01
description Abstract The formation of amyloid fibrils is critical for neurodegenerative diseases. Some physiochemical conditions can promote the conversion of proteins from soluble globular shapes into insoluble well‐organized amyloid fibrils. The aim of this study was to investigate the effect of temperatures on amyloid fibrils formation in vitro using the protein model of hen egg‐white lysozyme (HEWL). The HEWL fibrils were prepared at temperatures of 37, 45, 50 and 57°C in glycine solution of pH 2.2. Under transmission electron microscopy, we found the well‐organized HEWL amyloid fibrils at temperatures of 45, 50 and 57°C after 10 days of incubation. Thioflavin T and Congo red florescence assays confirmed that the formation and growth of HEWL fibrils displayed a temperature‐dependent increase, and 57°C produced the most amounts. Meanwhile, the surface hydrophobicity of aggregates was greatly increased by ANS binding assay, and β‐sheet contents by circular dichroism analysis were increased by 17.8%, 22.0% and 34.9%, respectively. Furthermore, the HEWL fibrils formed at 57°C caused significant cytotoxicity in SH‐SY5Y cells after 48 hr exposure, and the cell viability determined by MTT assay was decreased, with 81.35 ± 0.29% for 1 μM, 61.45 ± 2.62% for 2 μM, and 11.58 ± 0.39% (p < .01) for 3 μM. Nuclear staining results also confirmed the apoptosis features. These results suggest that the elevated temperatures could accelerate protein unfolding of the native structure and formation of toxic amyloid fibrils, which can improve understanding the mechanisms of the unfolding and misfolding process of prion protein.
topic amyloid fibrils
elevated temperatures
hen egg‐white lysozyme
prion
protein unfolding
url https://doi.org/10.1002/vms3.522
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AT yubai elevatedtemperaturesacceleratetheformationoftoxicamyloidfibrilsofheneggwhitelysozyme
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