A Highly Protective Live-Attenuated Vaccine Generated by Targeted Deletion of theVirulence Factor VapC40.
Xin Ge, Haoran Wang, Dingpu Liu, Yuhui Dong, Lin Li, Puxiu Shen, Yue Li, Jiaming Zhang, et al. (10 authors)
International journal of molecular sciences · 2026-05
Abstract
Type II toxin-antitoxin (TA) systems are significantly expanded in thecomplex; however, the functional role of the VapBC40 system in() pathogenesis remains poorly characterized. This study aimed to investigate the role of VapBC40 in mycobacterial virulence and evaluate its potential as a target for rational vaccine attenuation. We performed evolutionary analysis and yeast two-hybrid assays to characterize VapBC40 system specificity, conducted in vitro macrophage infection models and in vivo murine studies to assess virulence contribution, and evaluated the immunoprotective efficacy of a VapC40 knockout strain. Evolutionary analysis revealed progressive sequence conservation and stringent homologous pairing specificity within the VapBC40 system. The VapC40 toxin correlates with enhanced intracellular bacterial survival, increased host cell death, and more severe pulmonary pathology with systemic dissemination. Based on these findings, we evaluated the vaccine potential of aknockout strain. Immunization with this attenuated strain elicited a Th1 cellular immune response, characterized by enhanced IFN-γ production and increased frequency of CD4IFN-γT cells. Upon challenge with virulent, the knockout strain conferred superior protection compared to the conventional BCG vaccine, significantly reducing lung pathology and restricting extrapulmonary bacterial dissemination. Although the molecular mechanisms underlying VapC40-mediated effects remain to be fully elucidated, our findings suggest an important role of the VapBC40 system in mycobacterial-host interactions and support its potential as a target for next-generation tuberculosis vaccine development.
MeSH terms
- Animals
- Mycobacterium bovis
- Vaccines, Attenuated
- Mice
- Virulence Factors
- Bacterial Proteins
- Tuberculosis
- Female
- Macrophages
- Th1 Cells
- Tuberculosis Vaccines
- BCG Vaccine
- Gene Deletion
- Mice, Inbred C57BL
- Virulence