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1.
PLoS Pathog ; 19(3): e1011249, 2023 03.
Artigo em Inglês | MEDLINE | ID: mdl-36961851

RESUMO

Pasteurella multocida can infect a multitude of wild and domesticated animals, with infections in cattle resulting in hemorrhagic septicemia (HS) or contributing to bovine respiratory disease (BRD) complex. Current cattle vaccines against P. multocida consist of inactivated bacteria, which only offer limited and serogroup specific protection. Here, we describe a newly identified surface lipoprotein, PmSLP, that is present in nearly all annotated P. multocida strains isolated from cattle. Bovine associated variants span three of the four identified phylogenetic clusters, with PmSLP-1 and PmSLP-2 being restricted to BRD associated isolates and PmSLP-3 being restricted to isolates associated with HS. Recombinantly expressed, soluble PmSLP-1 (BRD-PmSLP) and PmSLP-3 (HS-PmSLP) vaccines were both able to provide full protection in a mouse sepsis model against the matched P. multocida strain, however no cross-protection and minimal serum IgG cross-reactivity was identified. Full protection against both challenge strains was achieved with a bivalent vaccine containing both BRD-PmSLP and HS-PmSLP, with serum IgG from immunized mice being highly reactive to both variants. Year-long stability studies with lyophilized antigen stored under various temperatures show no appreciable difference in biophysical properties or loss of efficacy in the mouse challenge model. PmSLP-1 and PmSLP-3 vaccines were each evaluated for immunogenicity in two independent cattle trials involving animals of different age ranges and breeds. In all four trials, vaccination with PmSLP resulted in an increase in antigen specific serum IgG over baseline. In a blinded cattle challenge study with a recently isolated HS strain, the matched HS-PmSLP vaccine showed strong efficacy (75-87.5% survival compared to 0% in the control group). Together, these data suggest that cattle vaccines composed of PmSLP antigens can be a practical and effective solution for preventing HS and BRD related P. multocida infections.


Assuntos
Septicemia Hemorrágica , Infecções por Pasteurella , Pasteurella multocida , Bovinos , Animais , Camundongos , Filogenia , Vacinologia , Vacinas Bacterianas , Septicemia Hemorrágica/microbiologia , Septicemia Hemorrágica/prevenção & controle , Septicemia Hemorrágica/veterinária , Modelos Animais de Doenças , Imunoglobulina G , Infecções por Pasteurella/microbiologia , Infecções por Pasteurella/prevenção & controle , Infecções por Pasteurella/veterinária
2.
Front Immunol ; 15: 1392681, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38835751

RESUMO

Background: Pasteurella multocida is a bacterial pathogen that causes a variety of infections across diverse animal species, with one of the most devastating associated diseases being hemorrhagic septicemia. Outbreaks of hemorrhagic septicemia in cattle and buffaloes are marked by rapid progression and high mortality. These infections have particularly harmful socio-economic impacts on small holder farmers in Africa and Asia who are heavily reliant on a small number of animals kept as a means of subsistence for milk and draft power purposes. A novel vaccine target, PmSLP-3, has been identified on the surface of hemorrhagic septicemia-associated strains of P. multocida and was previously shown to elicit robust protection in cattle against lethal challenge with a serogroup B strain. Methods: Here, we further investigate the protective efficacy of this surface lipoprotein, including evaluating the immunogenicity and protection upon formulation with a variety of adjuvants in both mice and cattle. Results: PmSLP-3 formulated with Montanide ISA 61 elicited the highest level of serum and mucosal IgG, elicited long-lasting serum antibodies, and was fully protective against serogroup B challenge. Studies were then performed to identify the minimum number of doses required and the needed protein quantity to maintain protection. Duration studies were performed in cattle, demonstrating sustained serum IgG titres for 3 years after two doses of vaccine and full protection against lethal serogroup B challenge at 7 months after a single vaccine dose. Finally, a serogroup E challenge study was performed, demonstrating that PmSLP-3 vaccine can provide protection against challenge by the two serogroups responsible for hemorrhagic septicemia. Conclusion: Together, these data indicate that PmSLP-3 formulated with Montanide ISA 61 is an immunogenic and protective vaccine against hemorrhagic septicemia-causing P. multocida strains in cattle.


Assuntos
Anticorpos Antibacterianos , Vacinas Bacterianas , Doenças dos Bovinos , Septicemia Hemorrágica , Pasteurella multocida , Animais , Bovinos , Pasteurella multocida/imunologia , Septicemia Hemorrágica/prevenção & controle , Septicemia Hemorrágica/veterinária , Septicemia Hemorrágica/imunologia , Septicemia Hemorrágica/microbiologia , Vacinas Bacterianas/imunologia , Vacinas Bacterianas/administração & dosagem , Doenças dos Bovinos/prevenção & controle , Doenças dos Bovinos/imunologia , Doenças dos Bovinos/microbiologia , Camundongos , Anticorpos Antibacterianos/sangue , Anticorpos Antibacterianos/imunologia , Feminino , Sorogrupo , Infecções por Pasteurella/prevenção & controle , Infecções por Pasteurella/veterinária , Infecções por Pasteurella/imunologia , Infecções por Pasteurella/microbiologia , Adjuvantes Imunológicos/administração & dosagem , Imunoglobulina G/sangue , Imunoglobulina G/imunologia , Camundongos Endogâmicos BALB C , Vacinação
3.
Methods Mol Biol ; 2414: 115-140, 2022.
Artigo em Inglês | MEDLINE | ID: mdl-34784035

RESUMO

Metal ion transporters in the outer membrane of gram-negative bacteria that are responsible for acquiring iron and zinc are attractive vaccine targets due to their essential function. The core function is mediated by an integral outer membrane TonB-dependent transporter (TBDT) that mediates the transport of the metal ion across the outer membrane. Some TBDTs also have a surface lipoprotein (SLP) that assists in the efficient capture of the metal ion-containing host protein from which the metal ion is extracted. The challenges in producing the integral outer membrane protein for a commercial subunit vaccine prompted us to develop a hybrid antigen strategy in which surface loops of the TBDT are displayed on the lipoprotein, which can readily be produced as a soluble protein. The focus of this chapter will be on the methods for production of hybrid antigens and evaluating the immune response they elicit.


Assuntos
Bactérias Gram-Negativas , Proteínas de Bactérias/genética , Proteínas de Bactérias/metabolismo , Bactérias Gram-Negativas/metabolismo , Proteínas de Membrana Transportadoras
4.
J Immunol Methods ; 493: 113037, 2021 06.
Artigo em Inglês | MEDLINE | ID: mdl-33722512

RESUMO

Traditional ELISA-based protein analysis has been predicated on the assumption that proteins bind randomly to the solid surface of the ELISA plate polymer (polystyrene or polyvinyl chloride). Random adherence to the plate ensures equal access to all faces of the protein, an important consideration when evaluating immunogenicity of polyclonal serum samples as well as when examining the cross-reactivity of immune serum against different antigenic variants of a protein. In this study we demonstrate that the soluble form of the surface lipoprotein transferrin binding protein B (TbpB) from three different bacterial pathogens (Neisseria meningitidis, Actinobacillus pleuropneumoniae, and Mannheimia haemolytica) bind the ELISA plate in a manner that consistently obscures the transferrin binding face of the proteins' N-lobe. In order to develop a non-biased ELISA where all faces of the protein are accessible, the strong interaction between biotin and avidin has been exploited by adding a biotin tag to these proteins during Escherichia coli-based cytoplasmic expression and utilizing streptavidin or neutravidin coated ELISA plates for protein capture and display. The use of avidin coated ELISA plates also allows for rapid purification of biotin-tagged proteins from crude E. coli lysates, removing the requirement of prior affinity purification of each protein to be included in the ELISA-based analyses. In proof of concept experiments we demonstrate the utility of this approach for evaluating immunogenicity and cross-reactivity of serum from mice and pigs immunized with TbpBs from human and porcine pathogens.


Assuntos
Actinobacillus pleuropneumoniae/química , Ensaio de Imunoadsorção Enzimática , Mannheimia haemolytica/química , Neisseria meningitidis/química , Proteína B de Ligação a Transferrina/imunologia , Actinobacillus pleuropneumoniae/imunologia , Avidina/química , Avidina/imunologia , Biotina/química , Biotina/imunologia , Mannheimia haemolytica/imunologia , Neisseria meningitidis/imunologia , Poliestirenos/química , Cloreto de Polivinila/química , Proteína B de Ligação a Transferrina/química
5.
Nat Commun ; 12(1): 6270, 2021 11 01.
Artigo em Inglês | MEDLINE | ID: mdl-34725337

RESUMO

Nutrient acquisition systems are often crucial for pathogen growth and survival during infection, and represent attractive therapeutic targets. Here, we study the protein machinery required for heme uptake in the opportunistic pathogen Acinetobacter baumannii. We show that the hemO locus, which includes a gene encoding the heme-degrading enzyme, is required for high-affinity heme acquisition from hemoglobin and serum albumin. The hemO locus includes a gene coding for a heme scavenger (HphA), which is secreted by a Slam protein. Furthermore, heme uptake is dependent on a TonB-dependent receptor (HphR), which is important for survival and/or dissemination into the vasculature in a mouse model of pulmonary infection. Our results indicate that A. baumannii uses a two-component receptor system for the acquisition of heme from host heme reservoirs.


Assuntos
Infecções por Acinetobacter/microbiologia , Acinetobacter baumannii/metabolismo , Proteínas de Bactérias/metabolismo , Heme/metabolismo , Acinetobacter baumannii/genética , Acinetobacter baumannii/crescimento & desenvolvimento , Animais , Proteínas de Bactérias/genética , Transporte Biológico , Feminino , Humanos , Camundongos Endogâmicos BALB C , Família Multigênica
6.
Front Immunol ; 10: 247, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-30837995

RESUMO

The surface transferrin receptor proteins from Neisseria gonorrhoeae have been recognized as ideal vaccine targets due to their critical role in survival in the human male genitourinary tract. Recombinant forms of the surface lipoprotein component of the receptor, transferrin binding protein B (TbpB), can be readily produced at high levels in the Escherichia coli cytoplasm and is suitable for commercial vaccine production. In contrast, the integral outer membrane protein, transferrin binding protein A (TbpA), is produced at relatively low levels in the outer membrane and requires detergents for solubilization and stabilization, processes not favorable for commercial applications. Capitalizing on the core ß-barrel structural feature common to the lipoprotein and integral outer membrane protein we engineered the lipoprotein as a scaffold for displaying conserved surface epitopes from TbpA. A stable version of the C-terminal domain of TbpB was prepared by replacing four larger exposed variable loops with short linking peptide regions. Four surface regions from the plug and barrel domains of Neisseria TbpA were transplanted onto this TbpB C-lobe scaffold, generating stable hybrid antigens. Antisera generated in mice and rabbits against the hybrid antigens recognized TbpA at the surface of Neisseria meningitidis and inhibited transferrin-dependent growth at levels comparable or better than antisera directed against the native TbpA protein. Two of the engineered hybrid antigens each elicited a TbpA-specific bactericidal antibody response comparable to that induced by TbpA. A hybrid antigen generated using a foreign scaffold (TbpB from the pig pathogen Haemophilus parasuis) displaying neisserial TbpA loop 10 was evaluated in a model of lower genital tract colonization by N. gonorrhoeae and a model of invasive infection by N. meningitidis. The loop 10 hybrid antigen was as effective as full length TbpA in eliminating N. gonorrhoeae from the lower genital tract of female mice and was protective against the low dose invasive infection by N. meningitidis. These results demonstrate that TbpB or its derivatives can serve as an effective scaffold for displaying surface epitopes of integral outer membrane antigens and these antigens can elicit protection against bacterial challenge.


Assuntos
Neisseria gonorrhoeae/imunologia , Neisseria meningitidis/imunologia , Ligação Proteica/imunologia , Proteína A de Ligação a Transferrina/imunologia , Proteína B de Ligação a Transferrina/imunologia , Transferrina/imunologia , Sequência de Aminoácidos , Animais , Proteínas da Membrana Bacteriana Externa/imunologia , Sítios de Ligação/imunologia , Feminino , Gonorreia/imunologia , Ferro/imunologia , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Coelhos , Alinhamento de Sequência , Suínos
7.
Vaccine ; 33(42): 5700-5707, 2015 Oct 13.
Artigo em Inglês | MEDLINE | ID: mdl-26263196

RESUMO

Actinobacillus pleuropneumoniae, Actinobacillus suis, and Haemophilus parasuis are bacterial pathogens from the upper respiratory tract that are responsible for a substantial burden of porcine disease. Although reduction of disease has been accomplished by intensive management practices, immunization remains an important strategy for disease prevention, particularly when intensive management practices are not feasible or suitable. An attractive target for vaccine development is the surface receptor involved in acquiring iron from host transferrin, since it is common to all three pathogenic species and has been shown to be essential for survival and disease causation. It has also recently been demonstrated that an engineered antigen derived from the lipoprotein component of the receptor, transferrin-binding protein B (TbpB), was more effective at preventing infection by H. parasuis than a commercial vaccine product. This study was initiated to explore the genetic and immunogenic diversity of the transferrin receptor system from these species. Nucleic acid sequences were obtained from a geographically and temporally diverse collection of isolates, consisting of 41 A. pleuropneumoniae strains, 30 H. parasuis strains, and 2 A. suis strains. Phylogenetic analyses demonstrated that the receptor protein sequences cluster independently of species, suggesting that there is genetic exchange between these species such that receptor-based vaccines should logically target all three species. To evaluate the cross-reactive response of TbpB-derived antigens, pigs were immunized with the intact TbpB, the TbpB N-lobe and the TbpB C-lobe from A. pleuropneumoniae strain H49 and the resulting sera were tested against a representative panel of TbpBs; demonstrating that the C-lobe induces a broadly cross-reactive response. Overall our results indicate that there is a common reservoir for transferrin receptor antigenic variation amongst these pathogens. While this could present a challenge to future vaccine development, our results suggest a rationally designed TbpB-based vaccine may provide protection against all three pathogens.


Assuntos
Actinobacillus pleuropneumoniae/metabolismo , Actinobacillus suis/metabolismo , Proteínas de Bactérias/imunologia , Haemophilus parasuis/metabolismo , Receptores da Transferrina/imunologia , Proteína B de Ligação a Transferrina/imunologia , Actinobacillus pleuropneumoniae/genética , Actinobacillus suis/genética , Animais , Variação Antigênica , Proteínas de Bactérias/genética , Reações Cruzadas , Haemophilus parasuis/genética , Masculino , Simulação de Acoplamento Molecular , Filogenia , Receptores da Transferrina/genética , Suínos , Proteína B de Ligação a Transferrina/genética
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