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The Molecular Chaperone Artemin Efficiently Blocks Fibrillization of TAU Protein In Vitro
by
Nasiri Khalili, Mohammad Ali
, Khosravi, Zahra
, Moradi, Sharif
, Hassan Sajedi, Reza
, Zeinoddini, Mehdi
in
Acrylamide
/ Affinity
/ Affinity chromatography
/ Agglomeration
/ Aggregation
/ Alzheimer's disease
/ Artemia
/ Artemin
/ Bacteria
/ Brain
/ Chaperone
/ Chaperones
/ Chromatography
/ Circular dichroism
/ Cysts
/ Dichroism
/ Dismantling
/ E coli
/ Electrophoresis
/ Fibrillogenesis
/ Fluorescence
/ Gel electrophoresis
/ Heat shock proteins
/ Heparin
/ Impact analysis
/ In vitro methods and tests
/ Incubation
/ Ion exchange
/ Kinetics
/ Molecular chains
/ Neurodegenerative diseases
/ Neurofibrillary tangles
/ Original
/ Polymerization
/ Protein folding
/ Proteins
/ Risk factors
/ Sodium
/ Sodium dodecyl sulfate
/ Sodium lauryl sulfate
/ Spectroscopic analysis
/ Spectroscopy
/ Spectrum analysis
/ Stem cells
/ TAU Protein
2018
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The Molecular Chaperone Artemin Efficiently Blocks Fibrillization of TAU Protein In Vitro
by
Nasiri Khalili, Mohammad Ali
, Khosravi, Zahra
, Moradi, Sharif
, Hassan Sajedi, Reza
, Zeinoddini, Mehdi
in
Acrylamide
/ Affinity
/ Affinity chromatography
/ Agglomeration
/ Aggregation
/ Alzheimer's disease
/ Artemia
/ Artemin
/ Bacteria
/ Brain
/ Chaperone
/ Chaperones
/ Chromatography
/ Circular dichroism
/ Cysts
/ Dichroism
/ Dismantling
/ E coli
/ Electrophoresis
/ Fibrillogenesis
/ Fluorescence
/ Gel electrophoresis
/ Heat shock proteins
/ Heparin
/ Impact analysis
/ In vitro methods and tests
/ Incubation
/ Ion exchange
/ Kinetics
/ Molecular chains
/ Neurodegenerative diseases
/ Neurofibrillary tangles
/ Original
/ Polymerization
/ Protein folding
/ Proteins
/ Risk factors
/ Sodium
/ Sodium dodecyl sulfate
/ Sodium lauryl sulfate
/ Spectroscopic analysis
/ Spectroscopy
/ Spectrum analysis
/ Stem cells
/ TAU Protein
2018
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The Molecular Chaperone Artemin Efficiently Blocks Fibrillization of TAU Protein In Vitro
by
Nasiri Khalili, Mohammad Ali
, Khosravi, Zahra
, Moradi, Sharif
, Hassan Sajedi, Reza
, Zeinoddini, Mehdi
in
Acrylamide
/ Affinity
/ Affinity chromatography
/ Agglomeration
/ Aggregation
/ Alzheimer's disease
/ Artemia
/ Artemin
/ Bacteria
/ Brain
/ Chaperone
/ Chaperones
/ Chromatography
/ Circular dichroism
/ Cysts
/ Dichroism
/ Dismantling
/ E coli
/ Electrophoresis
/ Fibrillogenesis
/ Fluorescence
/ Gel electrophoresis
/ Heat shock proteins
/ Heparin
/ Impact analysis
/ In vitro methods and tests
/ Incubation
/ Ion exchange
/ Kinetics
/ Molecular chains
/ Neurodegenerative diseases
/ Neurofibrillary tangles
/ Original
/ Polymerization
/ Protein folding
/ Proteins
/ Risk factors
/ Sodium
/ Sodium dodecyl sulfate
/ Sodium lauryl sulfate
/ Spectroscopic analysis
/ Spectroscopy
/ Spectrum analysis
/ Stem cells
/ TAU Protein
2018
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The Molecular Chaperone Artemin Efficiently Blocks Fibrillization of TAU Protein In Vitro
Journal Article
The Molecular Chaperone Artemin Efficiently Blocks Fibrillization of TAU Protein In Vitro
2018
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Overview
Aggregation of the TAU proteins in the form of neurofibrillary tangles (NFTs) in the brain is a common risk factor in tauopathies including Alzheimer's disease (AD). Several strategies have been implemented to target NFTs, among which chaperones, which facilitate the proper folding of proteins, appear to hold great promise in effectively inhibiting TAU polymerization. The aim of this study was to analyze the impact of the chaperone Artemin on TAU aggregation in vitro.
In this experimental study, recombinant TAU- or Artemin proteins were expressed in E.coli bacteria, and purified using ion-exchange and affinity chromatography. Sodium dodecyl sulfate-poly acrylamide gel electrophoresis (SDS-PAGE) was used to run the extracted proteins and check their purity. Heparin was used as an aggregation inducer. The interaction kinetics of TAU aggregation and disassembly was performed using thioflavin T (ThT) fluorescence analysis and circular dichroism (CD) spectroscopy.
Ion-exchange and affinity chromatography yielded highly pure TAU and Artemin proteins for subsequent analyses. In addition, we found that heparin efficiently induced TAU fibrillization 48 hours post-incubation, as evidenced by ThT assay. Importantly, Artemin was observed to effectively block the aggregation of both physiologic- and supraphysiologic TAU concentrations in a dose-dependent manner, as judged by ThT and CD spectroscopy analyses.
Our collective results show, for the first time, that the chaperone Artemin could significantly inhibit aggregation of the TAU proteins in a dose-dependent manner, and support Artemin as a potential potent blocker of TAU aggregation in people with AD.
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