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TSGIT: An N‐ and C‐terminal tandem tag system for purification of native and intein‐mediated ligation‐ready proteins

A large variety of fusion tags have been developed to improve protein expression, solubilization, and purification. Nevertheless, these tags have been combined in a rather limited number of composite tags and usually these composite tags have been dictated by traditional commercially‐available expre...

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Autores principales: Raducanu, Vlad‐Stefan, Raducanu, Daniela‐Violeta, Ouyang, Yujing, Tehseen, Muhammad, Takahashi, Masateru, Hamdan, Samir M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7784762/
https://www.ncbi.nlm.nih.gov/pubmed/33150985
http://dx.doi.org/10.1002/pro.3989
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author Raducanu, Vlad‐Stefan
Raducanu, Daniela‐Violeta
Ouyang, Yujing
Tehseen, Muhammad
Takahashi, Masateru
Hamdan, Samir M.
author_facet Raducanu, Vlad‐Stefan
Raducanu, Daniela‐Violeta
Ouyang, Yujing
Tehseen, Muhammad
Takahashi, Masateru
Hamdan, Samir M.
author_sort Raducanu, Vlad‐Stefan
collection PubMed
description A large variety of fusion tags have been developed to improve protein expression, solubilization, and purification. Nevertheless, these tags have been combined in a rather limited number of composite tags and usually these composite tags have been dictated by traditional commercially‐available expression vectors. Moreover, most commercially‐available expression vectors include either N‐ or C‐terminal fusion tags but not both. Here, we introduce TSGIT, a fusion‐tag system composed of both N‐ and a C‐terminal composite fusion tags. The system includes two affinity tags, two solubilization tags and two cleavable tags distributed at both termini of the protein of interest. Therefore, the N‐ and the C‐terminal composite fusion tags in TSGIT are fully orthogonal in terms of both affinity selection and cleavage. For using TSGIT, we streamlined the cloning, expression, and purification procedures. Each component tag is selected to maximize its benefits toward the final construct. By expressing and partially purifying the protein of interest between the components of the TSGIT fusion, the full‐length protein is selected over truncated forms, which has been a long‐standing problem in protein purification. Moreover, due to the nature of the cleavable tags in TSGIT, the protein of interest is obtained in its native form without any additional undesired N‐ or C‐terminal amino acids. Finally, the resulting purified protein is ready for efficient ligation with other proteins or peptides for downstream applications. We demonstrate the use of this system by purifying a large amount of native fluorescent mRuby3 protein and bacteriophage T7 gp2.5 ssDNA‐binding protein.
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spelling pubmed-77847622021-01-08 TSGIT: An N‐ and C‐terminal tandem tag system for purification of native and intein‐mediated ligation‐ready proteins Raducanu, Vlad‐Stefan Raducanu, Daniela‐Violeta Ouyang, Yujing Tehseen, Muhammad Takahashi, Masateru Hamdan, Samir M. Protein Sci Methods and Applications A large variety of fusion tags have been developed to improve protein expression, solubilization, and purification. Nevertheless, these tags have been combined in a rather limited number of composite tags and usually these composite tags have been dictated by traditional commercially‐available expression vectors. Moreover, most commercially‐available expression vectors include either N‐ or C‐terminal fusion tags but not both. Here, we introduce TSGIT, a fusion‐tag system composed of both N‐ and a C‐terminal composite fusion tags. The system includes two affinity tags, two solubilization tags and two cleavable tags distributed at both termini of the protein of interest. Therefore, the N‐ and the C‐terminal composite fusion tags in TSGIT are fully orthogonal in terms of both affinity selection and cleavage. For using TSGIT, we streamlined the cloning, expression, and purification procedures. Each component tag is selected to maximize its benefits toward the final construct. By expressing and partially purifying the protein of interest between the components of the TSGIT fusion, the full‐length protein is selected over truncated forms, which has been a long‐standing problem in protein purification. Moreover, due to the nature of the cleavable tags in TSGIT, the protein of interest is obtained in its native form without any additional undesired N‐ or C‐terminal amino acids. Finally, the resulting purified protein is ready for efficient ligation with other proteins or peptides for downstream applications. We demonstrate the use of this system by purifying a large amount of native fluorescent mRuby3 protein and bacteriophage T7 gp2.5 ssDNA‐binding protein. John Wiley & Sons, Inc. 2020-11-16 2021-02 /pmc/articles/PMC7784762/ /pubmed/33150985 http://dx.doi.org/10.1002/pro.3989 Text en © 2020 The Authors. Protein Science published by Wiley Periodicals LLC on behalf of The Protein Society. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Methods and Applications
Raducanu, Vlad‐Stefan
Raducanu, Daniela‐Violeta
Ouyang, Yujing
Tehseen, Muhammad
Takahashi, Masateru
Hamdan, Samir M.
TSGIT: An N‐ and C‐terminal tandem tag system for purification of native and intein‐mediated ligation‐ready proteins
title TSGIT: An N‐ and C‐terminal tandem tag system for purification of native and intein‐mediated ligation‐ready proteins
title_full TSGIT: An N‐ and C‐terminal tandem tag system for purification of native and intein‐mediated ligation‐ready proteins
title_fullStr TSGIT: An N‐ and C‐terminal tandem tag system for purification of native and intein‐mediated ligation‐ready proteins
title_full_unstemmed TSGIT: An N‐ and C‐terminal tandem tag system for purification of native and intein‐mediated ligation‐ready proteins
title_short TSGIT: An N‐ and C‐terminal tandem tag system for purification of native and intein‐mediated ligation‐ready proteins
title_sort tsgit: an n‐ and c‐terminal tandem tag system for purification of native and intein‐mediated ligation‐ready proteins
topic Methods and Applications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7784762/
https://www.ncbi.nlm.nih.gov/pubmed/33150985
http://dx.doi.org/10.1002/pro.3989
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