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Co‐expression of the protease furin in Nicotiana benthamiana leads to efficient processing of latent transforming growth factor‐β1 into a biologically active protein

Transforming growth factor beta (TGF‐β) is a signalling molecule that plays a key role in developmental and immunological processes in mammals. Three TGF‐β isoforms exist in humans, and each isoform has unique therapeutic potential. Plants offer a platform for the production of recombinant proteins,...

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Autores principales: Wilbers, Ruud H. P., Westerhof, Lotte B., van Raaij, Debbie R., van Adrichem, Marloes, Prakasa, Andreas D., Lozano‐Torres, Jose L., Bakker, Jaap, Smant, Geert, Schots, Arjen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5067602/
https://www.ncbi.nlm.nih.gov/pubmed/26834022
http://dx.doi.org/10.1111/pbi.12530
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author Wilbers, Ruud H. P.
Westerhof, Lotte B.
van Raaij, Debbie R.
van Adrichem, Marloes
Prakasa, Andreas D.
Lozano‐Torres, Jose L.
Bakker, Jaap
Smant, Geert
Schots, Arjen
author_facet Wilbers, Ruud H. P.
Westerhof, Lotte B.
van Raaij, Debbie R.
van Adrichem, Marloes
Prakasa, Andreas D.
Lozano‐Torres, Jose L.
Bakker, Jaap
Smant, Geert
Schots, Arjen
author_sort Wilbers, Ruud H. P.
collection PubMed
description Transforming growth factor beta (TGF‐β) is a signalling molecule that plays a key role in developmental and immunological processes in mammals. Three TGF‐β isoforms exist in humans, and each isoform has unique therapeutic potential. Plants offer a platform for the production of recombinant proteins, which is cheap and easy to scale up and has a low risk of contamination with human pathogens. TGF‐β3 has been produced in plants before using a chloroplast expression system. However, this strategy requires chemical refolding to obtain a biologically active protein. In this study, we investigated the possibility to transiently express active human TGF‐β1 in Nicotiana benthamiana plants. We successfully expressed mature TGF‐β1 in the absence of the latency‐associated peptide (LAP) using different strategies, but the obtained proteins were inactive. Upon expression of LAP‐TGF‐β1, we were able to show that processing of the latent complex by a furin‐like protease does not occur in planta. The use of a chitinase signal peptide enhanced the expression and secretion of LAP‐TGF‐β1, and co‐expression of human furin enabled the proteolytic processing of latent TGF‐β1. Engineering the plant post‐translational machinery by co‐expressing human furin also enhanced the accumulation of biologically active TGF‐β1. This engineering step is quite remarkable, as furin requires multiple processing steps and correct localization within the secretory pathway to become active. Our data demonstrate that plants can be a suitable platform for the production of complex proteins that rely on specific proteolytic processing.
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spelling pubmed-50676022016-11-01 Co‐expression of the protease furin in Nicotiana benthamiana leads to efficient processing of latent transforming growth factor‐β1 into a biologically active protein Wilbers, Ruud H. P. Westerhof, Lotte B. van Raaij, Debbie R. van Adrichem, Marloes Prakasa, Andreas D. Lozano‐Torres, Jose L. Bakker, Jaap Smant, Geert Schots, Arjen Plant Biotechnol J Research Articles Transforming growth factor beta (TGF‐β) is a signalling molecule that plays a key role in developmental and immunological processes in mammals. Three TGF‐β isoforms exist in humans, and each isoform has unique therapeutic potential. Plants offer a platform for the production of recombinant proteins, which is cheap and easy to scale up and has a low risk of contamination with human pathogens. TGF‐β3 has been produced in plants before using a chloroplast expression system. However, this strategy requires chemical refolding to obtain a biologically active protein. In this study, we investigated the possibility to transiently express active human TGF‐β1 in Nicotiana benthamiana plants. We successfully expressed mature TGF‐β1 in the absence of the latency‐associated peptide (LAP) using different strategies, but the obtained proteins were inactive. Upon expression of LAP‐TGF‐β1, we were able to show that processing of the latent complex by a furin‐like protease does not occur in planta. The use of a chitinase signal peptide enhanced the expression and secretion of LAP‐TGF‐β1, and co‐expression of human furin enabled the proteolytic processing of latent TGF‐β1. Engineering the plant post‐translational machinery by co‐expressing human furin also enhanced the accumulation of biologically active TGF‐β1. This engineering step is quite remarkable, as furin requires multiple processing steps and correct localization within the secretory pathway to become active. Our data demonstrate that plants can be a suitable platform for the production of complex proteins that rely on specific proteolytic processing. John Wiley and Sons Inc. 2016-02-02 2016-08 /pmc/articles/PMC5067602/ /pubmed/26834022 http://dx.doi.org/10.1111/pbi.12530 Text en © 2016 The Authors. Plant Biotechnology Journal published by Society for Experimental Biology and The Association of Applied Biologists and John Wiley & Sons Ltd. This is an open access article under the terms of the Creative Commons Attribution (http://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Wilbers, Ruud H. P.
Westerhof, Lotte B.
van Raaij, Debbie R.
van Adrichem, Marloes
Prakasa, Andreas D.
Lozano‐Torres, Jose L.
Bakker, Jaap
Smant, Geert
Schots, Arjen
Co‐expression of the protease furin in Nicotiana benthamiana leads to efficient processing of latent transforming growth factor‐β1 into a biologically active protein
title Co‐expression of the protease furin in Nicotiana benthamiana leads to efficient processing of latent transforming growth factor‐β1 into a biologically active protein
title_full Co‐expression of the protease furin in Nicotiana benthamiana leads to efficient processing of latent transforming growth factor‐β1 into a biologically active protein
title_fullStr Co‐expression of the protease furin in Nicotiana benthamiana leads to efficient processing of latent transforming growth factor‐β1 into a biologically active protein
title_full_unstemmed Co‐expression of the protease furin in Nicotiana benthamiana leads to efficient processing of latent transforming growth factor‐β1 into a biologically active protein
title_short Co‐expression of the protease furin in Nicotiana benthamiana leads to efficient processing of latent transforming growth factor‐β1 into a biologically active protein
title_sort co‐expression of the protease furin in nicotiana benthamiana leads to efficient processing of latent transforming growth factor‐β1 into a biologically active protein
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5067602/
https://www.ncbi.nlm.nih.gov/pubmed/26834022
http://dx.doi.org/10.1111/pbi.12530
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