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A low-cost affinity purification system using β-1,3-glucan recognition protein and curdlan beads

Silkworm β-1,3-glucan recognition protein (βGRP) tightly and specifically associates with β-1,3-glucan. We report here an affinity purification system named the ‘GRP system’, which uses the association between the β-1,3-glucan recognition domain of βGRP (GRP-tag), as an affinity tag, and curdlan bea...

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Autores principales: Horiuchi, Masataka, Takahasi, Kiyohiro, Kobashigawa, Yoshihiro, Ochiai, Masanori, Inagaki, Fuyuhiko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3390167/
https://www.ncbi.nlm.nih.gov/pubmed/22706764
http://dx.doi.org/10.1093/protein/gzs028
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author Horiuchi, Masataka
Takahasi, Kiyohiro
Kobashigawa, Yoshihiro
Ochiai, Masanori
Inagaki, Fuyuhiko
author_facet Horiuchi, Masataka
Takahasi, Kiyohiro
Kobashigawa, Yoshihiro
Ochiai, Masanori
Inagaki, Fuyuhiko
author_sort Horiuchi, Masataka
collection PubMed
description Silkworm β-1,3-glucan recognition protein (βGRP) tightly and specifically associates with β-1,3-glucan. We report here an affinity purification system named the ‘GRP system’, which uses the association between the β-1,3-glucan recognition domain of βGRP (GRP-tag), as an affinity tag, and curdlan beads. Curdlan is a water-insoluble β-1,3-glucan reagent, the low cost of which (about 100 JPY/g) allows the economical preparation of beads. Curdlan beads can be readily prepared by solubilization in an alkaline solution, followed by neutralization, sonication and centrifugation. We applied the GRP system to preparation of several proteins and revealed that the expression levels of the GRP-tagged proteins in soluble fractions were two or three times higher than those of the glutathione S-transferase (GST)-tagged proteins. The purity of the GRP-tagged proteins on the curdlan beads was comparable to that of the GST-tagged proteins on glutathione beads. The chemical stability of the GRP system was more robust than conventional affinity systems under various conditions, including low pH (4–6). Biochemical and structural analyses revealed that proteins produced using the GRP system were structurally and functionally active. Thus, the GRP system is suitable for both the large- and small-scale preparation of recombinant proteins for functional and structural analyses.
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spelling pubmed-33901672012-07-05 A low-cost affinity purification system using β-1,3-glucan recognition protein and curdlan beads Horiuchi, Masataka Takahasi, Kiyohiro Kobashigawa, Yoshihiro Ochiai, Masanori Inagaki, Fuyuhiko Protein Eng Des Sel Original Articles Silkworm β-1,3-glucan recognition protein (βGRP) tightly and specifically associates with β-1,3-glucan. We report here an affinity purification system named the ‘GRP system’, which uses the association between the β-1,3-glucan recognition domain of βGRP (GRP-tag), as an affinity tag, and curdlan beads. Curdlan is a water-insoluble β-1,3-glucan reagent, the low cost of which (about 100 JPY/g) allows the economical preparation of beads. Curdlan beads can be readily prepared by solubilization in an alkaline solution, followed by neutralization, sonication and centrifugation. We applied the GRP system to preparation of several proteins and revealed that the expression levels of the GRP-tagged proteins in soluble fractions were two or three times higher than those of the glutathione S-transferase (GST)-tagged proteins. The purity of the GRP-tagged proteins on the curdlan beads was comparable to that of the GST-tagged proteins on glutathione beads. The chemical stability of the GRP system was more robust than conventional affinity systems under various conditions, including low pH (4–6). Biochemical and structural analyses revealed that proteins produced using the GRP system were structurally and functionally active. Thus, the GRP system is suitable for both the large- and small-scale preparation of recombinant proteins for functional and structural analyses. Oxford University Press 2012-08 2012-06-15 /pmc/articles/PMC3390167/ /pubmed/22706764 http://dx.doi.org/10.1093/protein/gzs028 Text en Published by Oxford University Press 2012 http://creativecommons.org/licenses/by-nc/2.5/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Horiuchi, Masataka
Takahasi, Kiyohiro
Kobashigawa, Yoshihiro
Ochiai, Masanori
Inagaki, Fuyuhiko
A low-cost affinity purification system using β-1,3-glucan recognition protein and curdlan beads
title A low-cost affinity purification system using β-1,3-glucan recognition protein and curdlan beads
title_full A low-cost affinity purification system using β-1,3-glucan recognition protein and curdlan beads
title_fullStr A low-cost affinity purification system using β-1,3-glucan recognition protein and curdlan beads
title_full_unstemmed A low-cost affinity purification system using β-1,3-glucan recognition protein and curdlan beads
title_short A low-cost affinity purification system using β-1,3-glucan recognition protein and curdlan beads
title_sort low-cost affinity purification system using β-1,3-glucan recognition protein and curdlan beads
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3390167/
https://www.ncbi.nlm.nih.gov/pubmed/22706764
http://dx.doi.org/10.1093/protein/gzs028
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