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Recombinant Production of a Novel Fusion Protein: Listeriolysin O Fragment Fused to S1 Subunit of Pertussis Toxin

BACKGROUND: Some resources have suggested that genetically inactivated PTs bear a more protective effect than chemically inactivated products. This study aimed to produce new version of PT, by cloning an inactive PTS1 in a fusion form with N-terminal half of the LLO pore-forming toxin. METHODS: Depo...

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Autores principales: Forghani, Hossein, Jamshidi Makiani, Mahin, Zarei Jaliani, Hossein, Boustanshenas, Mina, Zahraei, Seyed Mohsen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Pasteur Institute of Iran 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7748116/
https://www.ncbi.nlm.nih.gov/pubmed/33129237
http://dx.doi.org/10.29252/ibj.25.1.33
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author Forghani, Hossein
Jamshidi Makiani, Mahin
Zarei Jaliani, Hossein
Boustanshenas, Mina
Zahraei, Seyed Mohsen
author_facet Forghani, Hossein
Jamshidi Makiani, Mahin
Zarei Jaliani, Hossein
Boustanshenas, Mina
Zahraei, Seyed Mohsen
author_sort Forghani, Hossein
collection PubMed
description BACKGROUND: Some resources have suggested that genetically inactivated PTs bear a more protective effect than chemically inactivated products. This study aimed to produce new version of PT, by cloning an inactive PTS1 in a fusion form with N-terminal half of the LLO pore-forming toxin. METHODS: Deposited pdb structure file of the PT was used to model an extra disulfide bond. Codon-optimized ORF of the PTS1 was used to make recombinant constructs of PTS1 and LLO-PTS1 in the pPSG-IBA35 vector. The recombinant PTS1 and LLO-PTS1 proteins were expressed in BL21 DE3 and SHuffle T7 strains of E. coli and purified by affinity chromatography. Cytotoxic effects of the recombinant proteins were examined in the MCF-7 cell line. RESULTS: The purity of the products proved to be more than 85%, and the efficiency of the disulfide bond formation in SHuffle T7 strain was higher than BL21 DE3 strain. No cytotoxicity of the recombinant proteins was observed in MCF-7 cells. Soluble recombinant PTS1 and LLO-PTS1 proteins were produced in SHuffle T7 strain of E. coli with high efficiency of disulfide bonds formation. CONCLUSION: The LLO-PTS1 with corrected disulfide bonds was successfully expressed in E. coli SHuffle T7 strain. Due to the safety for human cells, this chimeric molecule can be an option to prevent pertussis disease if its immunostimulatory effects would be confirmed in the future.
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spelling pubmed-77481162021-01-06 Recombinant Production of a Novel Fusion Protein: Listeriolysin O Fragment Fused to S1 Subunit of Pertussis Toxin Forghani, Hossein Jamshidi Makiani, Mahin Zarei Jaliani, Hossein Boustanshenas, Mina Zahraei, Seyed Mohsen Iran Biomed J Full Length BACKGROUND: Some resources have suggested that genetically inactivated PTs bear a more protective effect than chemically inactivated products. This study aimed to produce new version of PT, by cloning an inactive PTS1 in a fusion form with N-terminal half of the LLO pore-forming toxin. METHODS: Deposited pdb structure file of the PT was used to model an extra disulfide bond. Codon-optimized ORF of the PTS1 was used to make recombinant constructs of PTS1 and LLO-PTS1 in the pPSG-IBA35 vector. The recombinant PTS1 and LLO-PTS1 proteins were expressed in BL21 DE3 and SHuffle T7 strains of E. coli and purified by affinity chromatography. Cytotoxic effects of the recombinant proteins were examined in the MCF-7 cell line. RESULTS: The purity of the products proved to be more than 85%, and the efficiency of the disulfide bond formation in SHuffle T7 strain was higher than BL21 DE3 strain. No cytotoxicity of the recombinant proteins was observed in MCF-7 cells. Soluble recombinant PTS1 and LLO-PTS1 proteins were produced in SHuffle T7 strain of E. coli with high efficiency of disulfide bonds formation. CONCLUSION: The LLO-PTS1 with corrected disulfide bonds was successfully expressed in E. coli SHuffle T7 strain. Due to the safety for human cells, this chimeric molecule can be an option to prevent pertussis disease if its immunostimulatory effects would be confirmed in the future. Pasteur Institute of Iran 2021-01 2020-02-10 /pmc/articles/PMC7748116/ /pubmed/33129237 http://dx.doi.org/10.29252/ibj.25.1.33 Text en This is an Open Access article distributed under the terms of the Creative Commons Attribution License, (http://creativecommons.org/licenses/by/3.0/) which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Length
Forghani, Hossein
Jamshidi Makiani, Mahin
Zarei Jaliani, Hossein
Boustanshenas, Mina
Zahraei, Seyed Mohsen
Recombinant Production of a Novel Fusion Protein: Listeriolysin O Fragment Fused to S1 Subunit of Pertussis Toxin
title Recombinant Production of a Novel Fusion Protein: Listeriolysin O Fragment Fused to S1 Subunit of Pertussis Toxin
title_full Recombinant Production of a Novel Fusion Protein: Listeriolysin O Fragment Fused to S1 Subunit of Pertussis Toxin
title_fullStr Recombinant Production of a Novel Fusion Protein: Listeriolysin O Fragment Fused to S1 Subunit of Pertussis Toxin
title_full_unstemmed Recombinant Production of a Novel Fusion Protein: Listeriolysin O Fragment Fused to S1 Subunit of Pertussis Toxin
title_short Recombinant Production of a Novel Fusion Protein: Listeriolysin O Fragment Fused to S1 Subunit of Pertussis Toxin
title_sort recombinant production of a novel fusion protein: listeriolysin o fragment fused to s1 subunit of pertussis toxin
topic Full Length
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7748116/
https://www.ncbi.nlm.nih.gov/pubmed/33129237
http://dx.doi.org/10.29252/ibj.25.1.33
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