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Expression and Purification of Chaperone-Active Recombinant Clusterin

Clusterin was the first described secreted mammalian chaperone and is implicated as being a key player in both intra- and extracellular proteostasis. Its unique combination of structural features and biological chaperone activity has, however, previously made it very challenging to express and purif...

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Autores principales: Dabbs, Rebecca A., Wilson, Mark R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3900688/
https://www.ncbi.nlm.nih.gov/pubmed/24466307
http://dx.doi.org/10.1371/journal.pone.0086989
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author Dabbs, Rebecca A.
Wilson, Mark R.
author_facet Dabbs, Rebecca A.
Wilson, Mark R.
author_sort Dabbs, Rebecca A.
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description Clusterin was the first described secreted mammalian chaperone and is implicated as being a key player in both intra- and extracellular proteostasis. Its unique combination of structural features and biological chaperone activity has, however, previously made it very challenging to express and purify the protein in a correctly processed and chaperone-active form. While there are multiple reports in the literature describing the use of recombinant clusterin, all of these reports suffer from one or more of the following shortcomings: details of the methods used to produce the protein are poorly described, the product is incompletely (if at all) characterised, and purity (if shown) is in many cases inadequate. The current report provides the first well validated method to economically produce pure chaperone-active recombinant clusterin. The method was developed after trialling expression in cultured bacterial, yeast, insect and mammalian cells, and involves the expression of recombinant clusterin from stably transfected HEK293 cells in protein-free medium. The product is expressed at between 7.5 and 10 µg/ml of culture, and is readily purified by a combination of immunoaffinity, cation exchange and size exclusion chromatography. The purified product was shown to be glycosylated, correctly proteolytically cleaved into α- and β-subunits, and have chaperone activity similar to that of human plasma clusterin. This new method creates the opportunity to use mutagenesis and metabolic labelling approaches in future studies to delineate functionally important sites within clusterin, and also provides a theoretically unlimited supply of recombinant clusterin which may in the future find applications in the development of therapeutics.
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spelling pubmed-39006882014-01-24 Expression and Purification of Chaperone-Active Recombinant Clusterin Dabbs, Rebecca A. Wilson, Mark R. PLoS One Research Article Clusterin was the first described secreted mammalian chaperone and is implicated as being a key player in both intra- and extracellular proteostasis. Its unique combination of structural features and biological chaperone activity has, however, previously made it very challenging to express and purify the protein in a correctly processed and chaperone-active form. While there are multiple reports in the literature describing the use of recombinant clusterin, all of these reports suffer from one or more of the following shortcomings: details of the methods used to produce the protein are poorly described, the product is incompletely (if at all) characterised, and purity (if shown) is in many cases inadequate. The current report provides the first well validated method to economically produce pure chaperone-active recombinant clusterin. The method was developed after trialling expression in cultured bacterial, yeast, insect and mammalian cells, and involves the expression of recombinant clusterin from stably transfected HEK293 cells in protein-free medium. The product is expressed at between 7.5 and 10 µg/ml of culture, and is readily purified by a combination of immunoaffinity, cation exchange and size exclusion chromatography. The purified product was shown to be glycosylated, correctly proteolytically cleaved into α- and β-subunits, and have chaperone activity similar to that of human plasma clusterin. This new method creates the opportunity to use mutagenesis and metabolic labelling approaches in future studies to delineate functionally important sites within clusterin, and also provides a theoretically unlimited supply of recombinant clusterin which may in the future find applications in the development of therapeutics. Public Library of Science 2014-01-23 /pmc/articles/PMC3900688/ /pubmed/24466307 http://dx.doi.org/10.1371/journal.pone.0086989 Text en © 2014 Dabbs, Wilson http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Dabbs, Rebecca A.
Wilson, Mark R.
Expression and Purification of Chaperone-Active Recombinant Clusterin
title Expression and Purification of Chaperone-Active Recombinant Clusterin
title_full Expression and Purification of Chaperone-Active Recombinant Clusterin
title_fullStr Expression and Purification of Chaperone-Active Recombinant Clusterin
title_full_unstemmed Expression and Purification of Chaperone-Active Recombinant Clusterin
title_short Expression and Purification of Chaperone-Active Recombinant Clusterin
title_sort expression and purification of chaperone-active recombinant clusterin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3900688/
https://www.ncbi.nlm.nih.gov/pubmed/24466307
http://dx.doi.org/10.1371/journal.pone.0086989
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