Comparative Analysis of Human B Cell Epitopes Based on BCG Genomes.
Ma-Chao LiHaican LiuXiuqin ZhaoKanglin WanPublished in: BioMed research international (2016)
Background. Tuberculosis is a huge global health problem. BCG is the only vaccine used for about 100 years against TB, but the reasons for protection variability in populations remain unclear. To improve BCG efficacy and develop a strategy for new vaccines, the underlying genetic differences among BCG subtypes should be understood urgently. Methods and Findings. Human B cell epitope data were collected from the Immune Epitope Database. Epitope sequences were mapped with those of 15 genomes, including 13 BCGs, M. bovis AF2122/97, and M. tuberculosis H37Rv, to identify epitopes distribution. Among 398 experimentally verified B cell epitopes, 321 (80.7%) were conserved, while the remaining 77 (19.3%) were lost to varying degrees in BCGs. The variable protective efficacy of BCGs may result from the degree of B cell epitopes deficiency. Conclusions. Here we firstly analyzed the genetic characteristics of BCGs based on B cell epitopes and found that B cell epitopes distribution may contribute to vaccine efficacy. Restoration of important antigens or effective B cell epitopes in BCG could be a useful strategy for vaccine development.
Keyphrases
- mycobacterium tuberculosis
- endothelial cells
- global health
- public health
- atrial fibrillation
- genome wide
- dendritic cells
- emergency department
- hiv aids
- immune response
- transcription factor
- adverse drug
- copy number
- hepatitis c virus
- monoclonal antibody
- deep learning
- human immunodeficiency virus
- genetic diversity
- antiretroviral therapy