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Enhanced Mitogenic Activity of Recombinant Human Vascular Endothelial Growth Factor VEGF(121) Expressed in E. coli Origami B (DE3) with Molecular Chaperones

We describe the production of a highly-active mutant VEGF variant, α(2)-PI(1-8)-VEGF(121), which contains a substrate sequence for factor XIIIa at the aminoterminus designed for incorporation into a fibrin gel. The α(2)-PI(1-8)-VEGF(121) gene was synthesized, cloned into a pET-32a(+) vector and expr...

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Autores principales: Kaplan, Ondřej, Zárubová, Jana, Mikulová, Barbora, Filová, Elena, Bártová, Jiřina, Bačáková, Lucie, Brynda, Eduard
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5055331/
https://www.ncbi.nlm.nih.gov/pubmed/27716773
http://dx.doi.org/10.1371/journal.pone.0163697
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author Kaplan, Ondřej
Zárubová, Jana
Mikulová, Barbora
Filová, Elena
Bártová, Jiřina
Bačáková, Lucie
Brynda, Eduard
author_facet Kaplan, Ondřej
Zárubová, Jana
Mikulová, Barbora
Filová, Elena
Bártová, Jiřina
Bačáková, Lucie
Brynda, Eduard
author_sort Kaplan, Ondřej
collection PubMed
description We describe the production of a highly-active mutant VEGF variant, α(2)-PI(1-8)-VEGF(121), which contains a substrate sequence for factor XIIIa at the aminoterminus designed for incorporation into a fibrin gel. The α(2)-PI(1-8)-VEGF(121) gene was synthesized, cloned into a pET-32a(+) vector and expressed in Escherichia coli Origami B (DE3) host cells. To increase the protein folding and the solubility, the resulting thioredoxin-α(2)-PI(1-8)-VEGF(121) fusion protein was co-expressed with recombinant molecular chaperones GroES/EL encoded by independent plasmid pGro7. The fusion protein was purified from the soluble fraction of cytoplasmic proteins using affinity chromatography. After cleavage of the thioredoxin fusion part with thrombin, the target protein was purified by a second round of affinity chromatography. The yield of purified α(2)-PI(1-8)-VEGF(121) was 1.4 mg per liter of the cell culture. The α(2)-PI(1-8)-VEGF(121) expressed in this work increased the proliferation of endothelial cells 3.9–8.7 times in comparison with commercially-available recombinant VEGF(121). This very high mitogenic activity may be caused by co-expression of the growth factor with molecular chaperones not previously used in VEGF production. At the same time, α(2)-PI(1-8)-VEGF(121) did not elicit considerable inflammatory activation of human endothelial HUVEC cells and human monocyte-like THP-1 cells.
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spelling pubmed-50553312016-10-27 Enhanced Mitogenic Activity of Recombinant Human Vascular Endothelial Growth Factor VEGF(121) Expressed in E. coli Origami B (DE3) with Molecular Chaperones Kaplan, Ondřej Zárubová, Jana Mikulová, Barbora Filová, Elena Bártová, Jiřina Bačáková, Lucie Brynda, Eduard PLoS One Research Article We describe the production of a highly-active mutant VEGF variant, α(2)-PI(1-8)-VEGF(121), which contains a substrate sequence for factor XIIIa at the aminoterminus designed for incorporation into a fibrin gel. The α(2)-PI(1-8)-VEGF(121) gene was synthesized, cloned into a pET-32a(+) vector and expressed in Escherichia coli Origami B (DE3) host cells. To increase the protein folding and the solubility, the resulting thioredoxin-α(2)-PI(1-8)-VEGF(121) fusion protein was co-expressed with recombinant molecular chaperones GroES/EL encoded by independent plasmid pGro7. The fusion protein was purified from the soluble fraction of cytoplasmic proteins using affinity chromatography. After cleavage of the thioredoxin fusion part with thrombin, the target protein was purified by a second round of affinity chromatography. The yield of purified α(2)-PI(1-8)-VEGF(121) was 1.4 mg per liter of the cell culture. The α(2)-PI(1-8)-VEGF(121) expressed in this work increased the proliferation of endothelial cells 3.9–8.7 times in comparison with commercially-available recombinant VEGF(121). This very high mitogenic activity may be caused by co-expression of the growth factor with molecular chaperones not previously used in VEGF production. At the same time, α(2)-PI(1-8)-VEGF(121) did not elicit considerable inflammatory activation of human endothelial HUVEC cells and human monocyte-like THP-1 cells. Public Library of Science 2016-10-07 /pmc/articles/PMC5055331/ /pubmed/27716773 http://dx.doi.org/10.1371/journal.pone.0163697 Text en © 2016 Kaplan et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Kaplan, Ondřej
Zárubová, Jana
Mikulová, Barbora
Filová, Elena
Bártová, Jiřina
Bačáková, Lucie
Brynda, Eduard
Enhanced Mitogenic Activity of Recombinant Human Vascular Endothelial Growth Factor VEGF(121) Expressed in E. coli Origami B (DE3) with Molecular Chaperones
title Enhanced Mitogenic Activity of Recombinant Human Vascular Endothelial Growth Factor VEGF(121) Expressed in E. coli Origami B (DE3) with Molecular Chaperones
title_full Enhanced Mitogenic Activity of Recombinant Human Vascular Endothelial Growth Factor VEGF(121) Expressed in E. coli Origami B (DE3) with Molecular Chaperones
title_fullStr Enhanced Mitogenic Activity of Recombinant Human Vascular Endothelial Growth Factor VEGF(121) Expressed in E. coli Origami B (DE3) with Molecular Chaperones
title_full_unstemmed Enhanced Mitogenic Activity of Recombinant Human Vascular Endothelial Growth Factor VEGF(121) Expressed in E. coli Origami B (DE3) with Molecular Chaperones
title_short Enhanced Mitogenic Activity of Recombinant Human Vascular Endothelial Growth Factor VEGF(121) Expressed in E. coli Origami B (DE3) with Molecular Chaperones
title_sort enhanced mitogenic activity of recombinant human vascular endothelial growth factor vegf(121) expressed in e. coli origami b (de3) with molecular chaperones
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5055331/
https://www.ncbi.nlm.nih.gov/pubmed/27716773
http://dx.doi.org/10.1371/journal.pone.0163697
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