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Construction, Investigation and Application of TEV Protease Variants with Improved Oxidative Stability

Tobacco etch virus protease (TEVp) is a useful tool for removing fusion tags, but wild-type TEVp is less stable under oxidized redox state. In this work, we introduced and combined C19S, C110S and C130S into TEVp variants containing T17S, L56V, N68D, I77V and S135G to improve protein solubility, and...

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Autores principales: Bayar, Enkhtuya, Ren, Yuanyuan, Chen, Yinghua, Hu, Yafang, Zhang, Shuncheng, Yu, Xuelian, Fan, Jun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Society for Microbiology and Biotechnology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9705859/
https://www.ncbi.nlm.nih.gov/pubmed/34528919
http://dx.doi.org/10.4014/jmb.2106.06075
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author Bayar, Enkhtuya
Ren, Yuanyuan
Chen, Yinghua
Hu, Yafang
Zhang, Shuncheng
Yu, Xuelian
Fan, Jun
author_facet Bayar, Enkhtuya
Ren, Yuanyuan
Chen, Yinghua
Hu, Yafang
Zhang, Shuncheng
Yu, Xuelian
Fan, Jun
author_sort Bayar, Enkhtuya
collection PubMed
description Tobacco etch virus protease (TEVp) is a useful tool for removing fusion tags, but wild-type TEVp is less stable under oxidized redox state. In this work, we introduced and combined C19S, C110S and C130S into TEVp variants containing T17S, L56V, N68D, I77V and S135G to improve protein solubility, and S219V to inhibit self-proteolysis. The solubility and cleavage activity of the constructed variants in Escherichia coli strains including BL21(DE3), BL21(DE3)pLys, Rossetta(DE3) and Origami(DE3) under the same induction conditions were analyzed and compared. The desirable soluble amounts, activity, and oxidative stability were identified to be reluctantly favored in the TEVp. Unlike C19S, C110S and C130S hardly impacted on decreasing protein solubility in the BL21(DE3), but they contributed to improved tolerance to the oxidative redox state in vivo and in vitro. After two fusion proteins were cleaved by purified TEVp protein containing double mutations under the oxidized redox state, the refolded disulfide-rich bovine enterokinase catalytic domain or maize peroxidase with enhanced yields were released from the regenerated amorphous cellulose via affinity absorption of the cellulose-binding module as the affinity tag.
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spelling pubmed-97058592022-12-13 Construction, Investigation and Application of TEV Protease Variants with Improved Oxidative Stability Bayar, Enkhtuya Ren, Yuanyuan Chen, Yinghua Hu, Yafang Zhang, Shuncheng Yu, Xuelian Fan, Jun J Microbiol Biotechnol Research article Tobacco etch virus protease (TEVp) is a useful tool for removing fusion tags, but wild-type TEVp is less stable under oxidized redox state. In this work, we introduced and combined C19S, C110S and C130S into TEVp variants containing T17S, L56V, N68D, I77V and S135G to improve protein solubility, and S219V to inhibit self-proteolysis. The solubility and cleavage activity of the constructed variants in Escherichia coli strains including BL21(DE3), BL21(DE3)pLys, Rossetta(DE3) and Origami(DE3) under the same induction conditions were analyzed and compared. The desirable soluble amounts, activity, and oxidative stability were identified to be reluctantly favored in the TEVp. Unlike C19S, C110S and C130S hardly impacted on decreasing protein solubility in the BL21(DE3), but they contributed to improved tolerance to the oxidative redox state in vivo and in vitro. After two fusion proteins were cleaved by purified TEVp protein containing double mutations under the oxidized redox state, the refolded disulfide-rich bovine enterokinase catalytic domain or maize peroxidase with enhanced yields were released from the regenerated amorphous cellulose via affinity absorption of the cellulose-binding module as the affinity tag. The Korean Society for Microbiology and Biotechnology 2021-12-28 2021-09-10 /pmc/articles/PMC9705859/ /pubmed/34528919 http://dx.doi.org/10.4014/jmb.2106.06075 Text en Copyright © 2021 by the authors. Licensee KMB. https://creativecommons.org/licenses/by/4.0/This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research article
Bayar, Enkhtuya
Ren, Yuanyuan
Chen, Yinghua
Hu, Yafang
Zhang, Shuncheng
Yu, Xuelian
Fan, Jun
Construction, Investigation and Application of TEV Protease Variants with Improved Oxidative Stability
title Construction, Investigation and Application of TEV Protease Variants with Improved Oxidative Stability
title_full Construction, Investigation and Application of TEV Protease Variants with Improved Oxidative Stability
title_fullStr Construction, Investigation and Application of TEV Protease Variants with Improved Oxidative Stability
title_full_unstemmed Construction, Investigation and Application of TEV Protease Variants with Improved Oxidative Stability
title_short Construction, Investigation and Application of TEV Protease Variants with Improved Oxidative Stability
title_sort construction, investigation and application of tev protease variants with improved oxidative stability
topic Research article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9705859/
https://www.ncbi.nlm.nih.gov/pubmed/34528919
http://dx.doi.org/10.4014/jmb.2106.06075
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