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1.
Chinese Journal of Biotechnology ; (12): 148-159, 2022.
Article in Chinese | WPRIM | ID: wpr-927700

ABSTRACT

The GapC protein of Streptococcus uberis located on the surface of bacteria is a protein with glyceraldehyde-3-phosphate dehydrogenase activity. It participates in cellular processes and exhibits a variety of biological activities. In addition, it has good antigenicity. The aim of this study was to predict the possible B-cell epitopes of the GapC protein and verify the immunogenicity of candidate epitope peptides. The gapC gene of S. uberis isolate RF5-1 was cloned into a recombinant expression plasmid pET-28a-GapC and inducibly expressed. The purified protein was used to immunize experimental rabbits to produce anti-GapC polyclonal antibodies. The three-dimensional structure and three-dimensional location of the GapC B-cell epitopes and the homology comparison of the GapC protein and its B-cell epitopes were carried out using bioinformatics softwares. The results showed that the 44-kDa GapC protein had a good immunological reactivity. Six linear and 3 conformational dominant B-cell epitopes against the GapC protein were selected and synthesized. Three dimensional analysis indicated that the selected peptides have better antigen epitope formation potential. Rabbit anti-GapC polyclonal antibodies were generated after immunized with the purified GapC protein, and the polyclonal antibodies were used to identify the epitope peptide by an indirect ELISA. The ELISA results showed that all of the 9 epitope peptides could react with anti-GapC polyclonal antibodies with varying titers. Among them, the epitope polypeptide 266AANDSYGYTEDPIVSSD282 reacted with the polyclonal antibodies significantly stronger than with other epitope peptides. This study laid an experimental foundation for in-depth understanding of the immunological properties and utilizing effective epitopes of the GapC protein of S. uberis.


Subject(s)
Animals , Mice , Rabbits , Antigens, Bacterial/genetics , Bacterial Proteins/genetics , Epitopes, B-Lymphocyte/genetics , Mice, Inbred BALB C , Streptococcus
2.
Biomedical and Environmental Sciences ; (12): 364-371, 2021.
Article in English | WPRIM | ID: wpr-878372

ABSTRACT

Objective@#To study the polymorphism in P66 and its human B-cell epitopes of @*Methods@#Polymerase chain reaction (PCR) and sequencing were used to obtain the P66 sequences of 59 Chinese @*Results@#Results showed that genetic and amino acid diversity presented in the 66 kD protein of all 59 Chinese strains, especially in @*Conclusion@#In P66 of 59 Chinese strains, polymorphisms were widely distributed. More importantly, the P66 amino acid sequences of


Subject(s)
Humans , Bacterial Proteins/genetics , Borrelia burgdorferi/genetics , China , Cluster Analysis , Epitopes, B-Lymphocyte/genetics , Genetic Markers , Genotype , Mutation , Polymerase Chain Reaction , Polymorphism, Genetic , Porins/genetics
3.
Braz. j. med. biol. res ; 51(5): e6213, 2018. tab, graf
Article in English | LILACS | ID: biblio-889085

ABSTRACT

Dermatophagoides farinae (Der f), one of the main species of house dust mites, produces more than 30 allergens. A recently identified allergen belonging to the alpha-tubulin protein family, Der f 33, has not been characterized in detail. In this study, we used bioinformatics tools to construct the secondary and tertiary structures and predict the B and T cell epitopes of Der f 33. First, protein attribution, protein patterns, and physicochemical properties were predicted. Then, a reasonable tertiary structure was constructed by homology modeling. In addition, six B cell epitopes (amino acid positions 34-45, 63-67, 103-108, 224-230, 308-316, and 365-377) and four T cell epitopes (positions 178-186, 241-249, 335-343, and 402-410) were predicted. These results established a theoretical basis for further studies and eventual epitope-based vaccine design against Der f 33.


Subject(s)
Animals , Tubulin/chemistry , Allergens/chemistry , Epitopes, T-Lymphocyte/chemistry , Epitopes, B-Lymphocyte/chemistry , Dermatophagoides farinae/chemistry , Antigens, Dermatophagoides/chemistry , Tubulin/genetics , Tubulin/immunology , Allergens/genetics , Allergens/immunology , Molecular Structure , Protein Structure, Tertiary , Epitope Mapping , Epitopes, T-Lymphocyte/genetics , Epitopes, B-Lymphocyte/genetics , Computational Biology , Sequence Analysis, Protein , Dermatophagoides farinae/genetics , Dermatophagoides farinae/immunology , Antigens, Dermatophagoides/genetics , Antigens, Dermatophagoides/immunology
4.
Journal of Korean Medical Science ; : 359-362, 2001.
Article in English | WPRIM | ID: wpr-228337

ABSTRACT

The S protein of hepatitis B virus is the principal component of virus envelope and the primary target of anti-HBs response. Mutants or variants that escape neutralization by anti-HBs have been selected during immunoprophylaxis of HBV after birth and liver transplantation. We investigated a case of a Korean child who was vaccinated at birth against hepatitis B and also given hepatitis B immunoglobulin, but nevertheless later became infected with the virus. Hepatitis B virus-specific deoxyribonucleic acid covering the region of genome encoding the predominant "a" determinant of hepatitis surface antigen was amplified using polymerase chain reaction, and the nucleotide sequence was determined. We present for the first time in Korea the independent emergence of an escape mutant with substitution of arginine for glycine at amino acid 145 and proline for glutamate at amino acid 120 in "a" determinant after immunization.


Subject(s)
Humans , Infant , Male , Cloning, Molecular , DNA, Viral/analysis , Epitopes, B-Lymphocyte/genetics , Hepatitis B Surface Antigens/genetics , Hepatitis B Vaccines/adverse effects , Hepatitis B virus/genetics , Hepatitis B e Antigens/blood , Korea , Mutagenesis, Site-Directed , Mutation , Polymerase Chain Reaction/methods , Sequence Analysis, DNA
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