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1.
J Pharm Sci ; 107(9): 2283-2296, 2018 09.
Article in English | MEDLINE | ID: mdl-29763607

ABSTRACT

Lumazine synthase (LS) is a family of enzyme involved in the penultimate step in the biosynthesis of riboflavin. Its enzymatic mechanism has been well defined, and many LS structures have been solved using X-ray crystallography or cryoelectron microscopy. LS is composed of homooligomers, which vary in size and subunit number, including pentamers, decamers, and icosahedral sixty-mers, depending on its species of origin. Research on LS has expanded beyond the initial focus on its enzymatic function to properties related to its oligomeric structure and exceptional conformational stability. These attributes of LS systems have now been repurposed for use in various biomedical fields. This review primarily focuses on the applications of LS as a flexible vaccine presentation system. Presentation of antigens on the surface of LS results in a high local concentration of antigens displayed in an ordered array. Such repetitive structures enable the cross-linking of B-cell receptors and result in strong immune responses through an avidity effect. Potential issues with the use of this system and corresponding solutions are also discussed with the objective of improved utilization of the LS system in vaccine development.


Subject(s)
Drug Delivery Systems/trends , Multienzyme Complexes/administration & dosage , Multienzyme Complexes/immunology , Riboflavin Synthase/administration & dosage , Riboflavin Synthase/immunology , Animals , Drug Delivery Systems/methods , Humans , Immunogenicity, Vaccine/immunology , Multienzyme Complexes/chemistry , Protein Structure, Secondary , Riboflavin Synthase/chemistry
2.
Mol Immunol ; 49(1-2): 175-84, 2011 Oct.
Article in English | MEDLINE | ID: mdl-21943783

ABSTRACT

In order to screen immunogenic candidate antigens for the development of a brucellosis subunit vaccine, an immunoproteomic assay was used to identify immunogenic proteins from Brucella melitensis 16 M soluble proteins. In this study, a total of 56 immunodominant proteins were identified from the two-dimensional electrophoresis immunoblot profiles by liquid chromatography tandem mass spectrometry (LC-MS/MS). Two proteins of interest, riboflavin synthase alpha chain (RS-α) and Loraine synthase (LS-2), which are both involved in riboflavin synthesis, were detected by two-dimensional immunoblots using antisera obtained from Brucella-infected human and goats. LS-2, however, is an already well-known vaccine candidate. Therefore, we focussed our studies on the novel vaccine candidate RS-α. B. melitensis RS-α and LS-2 were then expressed in Escherichia coli as fusion proteins with His tag. The humoral and cellular immune responses to the recombinant (r)RS-α was characterized. In response to in vitro stimulation by rRS-α, splenocytes from mice vaccinated with rRS-α were able to produce γ-interferon (IFN-γ) and interleukin (IL)-2 but not interleukin (IL)-4 and interleukin (IL)-10. Furthermore, rRS-α or rLS-2-vaccinated mice were partially protected against B. melitensis infection. Our results suggested that we have developed a high-throughout, accurate, rapid and highly efficient method for the identification of candidate antigens by a combination of immunoproteomics with immunisation and bacterial challenge and rRs-α could be a useful candidate for the development of subunit vaccines against B. melitensis.


Subject(s)
Bacterial Proteins/immunology , Brucella Vaccine/immunology , Immunodominant Epitopes/immunology , Riboflavin Synthase/immunology , Animals , Antigens, Bacterial/immunology , Brucella melitensis , Brucellosis/prevention & control , Cell Separation , Electrophoresis, Gel, Two-Dimensional , Female , Flow Cytometry , Goats , Humans , Immunoblotting , Mice , Mice, Inbred BALB C , Proteomics , Recombinant Proteins/immunology , Tandem Mass Spectrometry , Vaccines, Subunit/immunology
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