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A Murine Model of Group B Streptococcus Vaginal Colonization
Published on: November 16, 2016
Surface protein distribution in Group B Streptococcus isolates from South Africa and identifying vaccine targets
Vicky Gent1, Ying-Jie Lu2, Sindiswa Lukhele1
1South African Medical Research Council: Vaccines and Infectious Diseases Analytics Research Unit, Faculty of Health Sciences, University of the Witwatersrand, Johannesburg, South Africa.
Insights
Group B Streptococcus (GBS) vaccines are needed for infants and pregnant women. This study identified nine novel GBS proteins with high antigenicity, showing potential as effective vaccine targets.
Area of Science:
- Microbiology
- Vaccinology
- Bioinformatics
Background:
- Group B Streptococcus (GBS) causes severe infections in neonates and pregnant women, with no current vaccines available.
- Genome sequencing has revealed potential GBS vaccine candidates, necessitating further investigation into their properties.
Purpose of the Study:
- To identify and evaluate conserved and immunogenic GBS proteins as potential vaccine targets using in silico reverse vaccinology.
- To assess the prevalence, conservation, antigenicity, and structural properties of GBS proteins in South African isolates.
Main Methods:
- In silico reverse vaccinology was employed to screen 89 candidate GBS proteins against 648 invasive and 603 colonizing GBS isolates.
- Proteins were evaluated based on genetic conservation, antigenicity, physico-chemical properties, subcellular localization, and epitope prediction.
Main Results:
- Ten GBS proteins were found to be highly conserved; nine are computationally inferred proteins and one is the surface Immunogenic Protein (SIP).
- Nine of these conserved proteins demonstrated higher antigenicity scores (>0.6498) compared to SIP, indicating strong potential as vaccine antigens.
Conclusions:
- The study identified nine novel GBS proteins with significant potential as vaccine antigen targets.
- These findings provide a foundation for developing new GBS vaccines to combat infections in vulnerable populations.
Abstract:
Group B Streptococcus (GBS) is a major cause of pneumonia, sepsis, and meningitis in infants younger than 3 months of age. Furthermore, GBS infection in pregnant women is associated with stillbirths and pre-term delivery. It also causes disease in immunocompromised adults and the elderly, but the highest incidence of the disease occurs in neonates and young infants. At this time, there are no licensed vaccines against GBS. Complete GBS genome sequencing has helped identify genetically conserved and immunogenic proteins, which could serve as vaccine immunogens. In this study, in silico reverse vaccinology method were used to evaluate the prevalence and conservation of GBS proteins in invasive and colonizing isolates from South African infants and women, respectively. Furthermore, this study aimed to predict potential GBS vaccine targets by evaluating metrics such as antigenicity, physico-chemical properties, subcellular localization, secondary and tertiary structures, and epitope prediction and conservation. A total of 648 invasive and 603 colonizing GBS isolate sequences were screened against a panel of 89 candidate GBS proteins. Ten of the 89 proteins were highly genetically conserved in invasive and colonizing GBS isolates, nine of which were computationally inferred proteins (gbs2106, SAN_1577, SAN_0356, SAN_1808, SAN_1685, SAN_0413, SAN_0990, SAN_1040, SAN_0226) and one was the surface Immunogenic Protein (SIP). Additionally, the nine proteins were predicted to be more antigenic than the SIP protein (antigenicity score of > 0.6498), highlighting their potential as GBS vaccine antigen targets.
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