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Fusion to Tetrahymena thermophila granule lattice protein 1 confers solubility to sexual stage malaria antigens in Escherichia coli

A transmission-blocking vaccine targeting the sexual stages of Plasmodium species could play a key role in eradicating malaria. Multiple studies have identified the P. falciparum proteins Pfs25 and Pfs48/45 as prime targets for transmission-blocking vaccines. Although significant advances have been...

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Autores principales: Agrawal, Alka, Bisharyan, Yelena, Papoyan, Ashot, Bednenko, Janna, Cardarelli, Joanna, Yao, Monica, Clark, Theodore, Berkmen, Mehmet, Ke, Na, Colussi, Paul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Academic Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6189453/
https://www.ncbi.nlm.nih.gov/pubmed/30081196
http://dx.doi.org/10.1016/j.pep.2018.08.001
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author Agrawal, Alka
Bisharyan, Yelena
Papoyan, Ashot
Bednenko, Janna
Cardarelli, Joanna
Yao, Monica
Clark, Theodore
Berkmen, Mehmet
Ke, Na
Colussi, Paul
author_facet Agrawal, Alka
Bisharyan, Yelena
Papoyan, Ashot
Bednenko, Janna
Cardarelli, Joanna
Yao, Monica
Clark, Theodore
Berkmen, Mehmet
Ke, Na
Colussi, Paul
author_sort Agrawal, Alka
collection PubMed
description A transmission-blocking vaccine targeting the sexual stages of Plasmodium species could play a key role in eradicating malaria. Multiple studies have identified the P. falciparum proteins Pfs25 and Pfs48/45 as prime targets for transmission-blocking vaccines. Although significant advances have been made in recombinant expression of these antigens, they remain difficult to produce at large scale and lack strong immunogenicity as subunit antigens. We linked a self-assembling protein, granule lattice protein 1 (Grl1p), from the ciliated protozoan, Tetrahymena thermophila, to regions of the ectodomains of either Pfs25 or Pfs48/45. We found that resulting protein chimera could be produced in E. coli as nanoparticles that could be readily purified in soluble form. When produced in the E. coli SHuffle strain, fusion to Grl1p dramatically increased solubility of target antigens while at the same time directing the formation of particles with diameters centering on 38 and 25 nm depending on the antigen. In a number of instances, co-expression with chaperone proteins and induction at a lower temperature further increased expression and solubility. Based on Western blotting and ELISA analysis, Pfs25 and Pfs48/45 retained their transmission-blocking epitopes within E. coli-derived particles, and the particles themselves elicited strong antibody responses in rabbits when given with an aluminum-based adjuvant. Antibodies against Pfs25-containing nanoparticles blocked parasite transmission in standard membrane-feeding assays. In conclusion, fusion to Grl1p can act as a solubility enhancer for proteins with limited solubility while retaining correct folding, which may be useful for applications such as the production of vaccines and other biologics.
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spelling pubmed-61894532019-01-01 Fusion to Tetrahymena thermophila granule lattice protein 1 confers solubility to sexual stage malaria antigens in Escherichia coli Agrawal, Alka Bisharyan, Yelena Papoyan, Ashot Bednenko, Janna Cardarelli, Joanna Yao, Monica Clark, Theodore Berkmen, Mehmet Ke, Na Colussi, Paul Protein Expr Purif Article A transmission-blocking vaccine targeting the sexual stages of Plasmodium species could play a key role in eradicating malaria. Multiple studies have identified the P. falciparum proteins Pfs25 and Pfs48/45 as prime targets for transmission-blocking vaccines. Although significant advances have been made in recombinant expression of these antigens, they remain difficult to produce at large scale and lack strong immunogenicity as subunit antigens. We linked a self-assembling protein, granule lattice protein 1 (Grl1p), from the ciliated protozoan, Tetrahymena thermophila, to regions of the ectodomains of either Pfs25 or Pfs48/45. We found that resulting protein chimera could be produced in E. coli as nanoparticles that could be readily purified in soluble form. When produced in the E. coli SHuffle strain, fusion to Grl1p dramatically increased solubility of target antigens while at the same time directing the formation of particles with diameters centering on 38 and 25 nm depending on the antigen. In a number of instances, co-expression with chaperone proteins and induction at a lower temperature further increased expression and solubility. Based on Western blotting and ELISA analysis, Pfs25 and Pfs48/45 retained their transmission-blocking epitopes within E. coli-derived particles, and the particles themselves elicited strong antibody responses in rabbits when given with an aluminum-based adjuvant. Antibodies against Pfs25-containing nanoparticles blocked parasite transmission in standard membrane-feeding assays. In conclusion, fusion to Grl1p can act as a solubility enhancer for proteins with limited solubility while retaining correct folding, which may be useful for applications such as the production of vaccines and other biologics. Academic Press 2019-01 /pmc/articles/PMC6189453/ /pubmed/30081196 http://dx.doi.org/10.1016/j.pep.2018.08.001 Text en © 2018 The Authors http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Agrawal, Alka
Bisharyan, Yelena
Papoyan, Ashot
Bednenko, Janna
Cardarelli, Joanna
Yao, Monica
Clark, Theodore
Berkmen, Mehmet
Ke, Na
Colussi, Paul
Fusion to Tetrahymena thermophila granule lattice protein 1 confers solubility to sexual stage malaria antigens in Escherichia coli
title Fusion to Tetrahymena thermophila granule lattice protein 1 confers solubility to sexual stage malaria antigens in Escherichia coli
title_full Fusion to Tetrahymena thermophila granule lattice protein 1 confers solubility to sexual stage malaria antigens in Escherichia coli
title_fullStr Fusion to Tetrahymena thermophila granule lattice protein 1 confers solubility to sexual stage malaria antigens in Escherichia coli
title_full_unstemmed Fusion to Tetrahymena thermophila granule lattice protein 1 confers solubility to sexual stage malaria antigens in Escherichia coli
title_short Fusion to Tetrahymena thermophila granule lattice protein 1 confers solubility to sexual stage malaria antigens in Escherichia coli
title_sort fusion to tetrahymena thermophila granule lattice protein 1 confers solubility to sexual stage malaria antigens in escherichia coli
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6189453/
https://www.ncbi.nlm.nih.gov/pubmed/30081196
http://dx.doi.org/10.1016/j.pep.2018.08.001
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