Peptide linker increased the stability of pneumococcal fusion protein vaccine candidate

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dc.contributor(LDV) Lab. Desenvolvimento de Vacinaspt_BR
dc.contributorPrograma de Pós-Doutoradopt_BR
dc.contributor.authorZane, Lucianopt_BR
dc.contributor.authorKraschowetz, Stefaniept_BR
dc.contributor.authorTrentini, Monalisa Martinspt_BR
dc.contributor.authorAlves, Vitor dos Santospt_BR
dc.contributor.authorAraujo, Sergio Carneiropt_BR
dc.contributor.authorGoulart, Cibellypt_BR
dc.contributor.authorLeite, Luciana Cezar de Cerqueirapt_BR
dc.contributor.authorGonçalves, Viviane Maimonipt_BR
dc.date.accessioned2023-03-07T18:51:50Z-
dc.date.available2023-03-07T18:51:50Z-
dc.date.issued2023pt_BR
dc.identifier.citationZane L, Kraschowetz S, Trentini MM, Alves VS, Araujo SC, Goulart C, et al. Peptide linker increased the stability of pneumococcal fusion protein vaccine candidate. Front in Bioeng and Biotec. 2023 Jan; 11:1108300. doi:10.3389/fbioe.2023.1108300.pt_BR
dc.identifier.urihttps://repositorio.butantan.gov.br/handle/butantan/4808-
dc.description.abstractStreptococcus pneumoniae is a bacterial pathogen exclusive to humans, responsible for respiratory and systemic diseases. Pneumococcal protein vaccines have been proposed as serotype-independent alternatives to currently used conjugated polysaccharide vaccines, which have presented limitations regarding their coverage. Previously in our group, pneumococcal surface protein A (PspA) and detoxified pneumolysin (PdT) were genetically fused and the hybrid protein protected mice against pneumococcal challenge, offered higher cross-protection against different strains and showed greater opsonophagocytosis rate than co-administered proteins. As juxtaposed fusion was unstable to upscale production of the protein, flexible (PspA-FL-PdT) and rigid (PspA-RL-PdT) molecular linkers were inserted between the antigens to increase stability. This work aimed to produce recombinant fusion proteins, evaluate their stability after linker insertion, both in silico and experimentally, and enable the production of two antigens in a single process. The two constructs with linkers were cloned into Escherichia coli and hybrid proteins were purified using chromatography; purity was evaluated by SDS-PAGE and stability by Western blot and high performance size exclusion chromatography. PspA-FL-PdT showed higher stability at −20°C and 4°C, without additional preservatives. In silico analyses also showed differences regarding stability of the fusion proteins, with molecule without linker presenting disallowed amino acid positions in Ramachandran plot and PspA-FL-PdT showing the best scores, in agreement with experimental results. Mice were immunized with three doses and different amounts of each protein. Both fusion proteins protected all groups of mice against intranasal lethal challenge. The results show the importance of hybrid protein structure on the stability of the products, which is essential for a successful bioprocess development.pt_BR
dc.description.sponsorship(FAPESP) Fundação de Amparo à Pesquisa do Estado de São Paulopt_BR
dc.description.sponsorship(CNPq) Conselho Nacional de Desenvolvimento Científico e Tecnológicopt_BR
dc.description.sponsorship(CAPES) Coordenação de Aperfeiçoamento de Pessoal de Nível Superiorpt_BR
dc.format.extent1108300pt_BR
dc.language.isoEnglishpt_BR
dc.relation.ispartofFrontiers in Bioengineering and Biotechnologypt_BR
dc.rightsOpen accesspt_BR
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/pt_BR
dc.titlePeptide linker increased the stability of pneumococcal fusion protein vaccine candidatept_BR
dc.typeArticlept_BR
dc.rights.licenseCC BYpt_BR
dc.identifier.doi10.3389/fbioe.2023.1108300pt_BR
dc.contributor.external(USP) Universidade de São Paulopt_BR
dc.identifier.citationvolume11pt_BR
dc.subject.keywordspacerpt_BR
dc.subject.keywordPspApt_BR
dc.subject.keywordpneumolysinpt_BR
dc.subject.keywordStreptococcus pneumoniaept_BR
dc.subject.keywordmouse immunizationpt_BR
dc.subject.keywordprotease detectionpt_BR
dc.subject.keywordprotein structural modelpt_BR
dc.subject.keywordrecombinant Escherichia colipt_BR
dc.relation.ispartofabbreviatedFront Bioeng Biotechnolpt_BR
dc.identifier.citationabntv. 11, 1108300, jan. 2023pt_BR
dc.identifier.citationvancouver2023 Jan; 11:1108300pt_BR
dc.contributor.butantanZane, Luciano|:Doutorado Externo|:(LDV) Lab. Desenvolvimento de Vacinaspt_BR
dc.contributor.butantanKraschowetz, Stefanie|:Aluno Externo|:(LDV) Lab. Desenvolvimento de Vacinaspt_BR
dc.contributor.butantanTrentini, Monalisa Martins|:Pós-Doc|:Programa de Pós-Doutorado|:(LDV) Lab. Desenvolvimento de Vacinaspt_BR
dc.contributor.butantanAlves, Vitor dos Santos|:Doutorado Externo|:(LDV) Lab. Desenvolvimento de Vacinaspt_BR
dc.contributor.butantanAraujo, Sergio Carneiro|:Doutorado Externo|:(LDV) Lab. Desenvolvimento de Vacinaspt_BR
dc.contributor.butantanGoulart, Cibelly|:Doutorado Externo|:(LDV) Lab. Desenvolvimento de Vacinas|:pt_BR
dc.contributor.butantanLeite, Luciana Cezar de Cerqueira|:Pesquisador|:(LDV) Lab. Desenvolvimento de Vacinaspt_BR
dc.contributor.butantanGonçalves, Viviane Maimoni|:Pesquisador|:(LDV) Lab. Desenvolvimento de Vacinas|:Autor de correspondênciapt_BR
dc.sponsorship.butantan(FAPESP) Fundação de Amparo à Pesquisa do Estado de São Paulo¦¦2017/24832-6pt_BR
dc.sponsorship.butantan(FAPESP) Fundação de Amparo à Pesquisa do Estado de São Paulo¦¦2016/50413-8pt_BR
dc.sponsorship.butantan(FAPESP) Fundação de Amparo à Pesquisa do Estado de São Paulo¦¦2021/02930-1pt_BR
dc.sponsorship.butantan(FAPESP) Fundação de Amparo à Pesquisa do Estado de São Paulo¦¦2019/06454-0pt_BR
dc.sponsorship.butantan(FAPESP) Fundação de Amparo à Pesquisa do Estado de São Paulo¦¦2009/17030-4pt_BR
dc.sponsorship.butantan(CNPq) Conselho Nacional de Desenvolvimento Científico e Tecnológico¦¦130373/2018-4pt_BR
dc.sponsorship.butantan(CAPES) Coordenação de Aperfeiçoamento de Pessoal de Nível Superior¦¦88887.465206/2019-00pt_BR
dc.identifier.bvsccBR78.1pt_BR
dc.identifier.bvsdbIBProdpt_BR
dc.description.dbindexedYespt_BR
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