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Chaperoning against amyloid aggregation: Monitoring in vitro and in vivo
Published in Humana Press Inc.
2019
PMID: 30710272
Volume: 1929
   
Pages: 135 - 154
Abstract
Protein aggregation and inclusion body formation have been a key causal phenomenon behind a majority of neurodegenerative disorders. Various approaches aimed at preventing the formation/elimination of protein aggregates are being developed to control these diseases. Molecular chaperones are a class of protein that not only direct the functionally relevant fold of the protein but also perform quality control against stress, misfolding/aggregation. Genes that encode molecular chaperones are induced and expressed in response to extreme stress conditions to “salvage” the cell by the “unfolded protein response” (UPR) signaling pathway. Here we describe in detail the various in vitro and in vivo assays involved in identifying the chaperone activity of proteins using human calnuc as a model protein. Calnuc is a Golgi resident, calcium-binding protein, identified as chaperone protein and is reported to protect the cells against the cytotoxicity caused by amyloidosis and ER stress. Calnuc is also reported to regulate G αi activity and inflammation apart from the role of chaperoning against amyloid proteins. © Springer Science+Business Media, LLC, part of Springer Nature 2019.
About the journal
JournalMethods in Molecular Biology
PublisherHumana Press Inc.
ISSN10643745
Open AccessNo
Concepts (50)
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    Alcohol dehydrogenase
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    AMYLOID PROTEIN
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    CALCIUM BINDING PROTEIN
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    CALNUC
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    Catalase
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    CHAPERONE
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    Citrate synthase
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    GLUTATHIONE TRANSFERASE
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    Malate dehydrogenase
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    Unclassified drug
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    Amyloid beta protein
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    Calcium
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    CALCIUM BINDING PROTEIN
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    CHAPERONE
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    Dna binding protein
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    INHIBITORY GUANINE NUCLEOTIDE BINDING PROTEIN
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    NERVE PROTEIN
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    NUCLEOBINDIN
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    Protein aggregate
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    Amyloidosis
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    Cell protection
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    Cytotoxicity
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    Endoplasmic reticulum stress
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    Enzyme activity
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    Gene overexpression
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    Human
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    In vitro study
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    In vivo study
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    Protein aggregation
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    Protein determination
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    Protein function
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    Temperature stress
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    Cell line
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    Chemistry
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    Fluorescence microscopy
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    Hek293 cell line
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    Metabolism
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    Protein folding
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    UNFOLDED PROTEIN RESPONSE
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    AMYLOID BETA-PEPTIDES
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    Calcium-binding proteins
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    Dna-binding proteins
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    GTP-BINDING PROTEIN ALPHA SUBUNITS, GI-GO
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    Hek293 cells
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    Humans
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    Microscopy, fluorescence
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    MOLECULAR CHAPERONES
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    NERVE TISSUE PROTEINS
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    Protein aggregates
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    UNFOLDED PROTEIN RESPONSE