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◆ Applied and environmental microbiology2026-08-10

The truncated major pilin subunit SBP2' contributes to Streptococcus suis meningitis by interacting with host plasminogen.

Genglin Guo, Pei Li, Yu Zhou, Quan Li, Yanfei Yu, Jiahui An, Wei Zhang

原始摘要(英文原文)· Original abstract
Meningitis is one of the most striking manifestations of Streptococcus suis infection. Although multiple virulence-associated factors have been identified, the mechanisms underlying meningitis development remain incompletely understood. In S. suis, a srtBCD pilus gene cluster has been identified; our previous study suggested its association with bacterial virulence. In this study, we investigated the role of the srtBCD cluster in S. suis pathogenesis and confirmed that SBP2' was specifically localized on the bacterial surface and was found to be essential for full virulence in a murine infection model, whereas deletion of other minor subunits had minimal impact. Using brain microvascular endothelial cells (BMECs), microglia, and a BALB/c mouse model, we examined how SBP2' promotes the development of S. suis meningitis. Our results show that SBP2' enhances bacterial colonization of BMECs and recruits host plasminogen, facilitating extracellular matrix (ECM) degradation, and thereby promoting bacterial invasion. In addition, SBP2' enables S. suis to evade microglial phagocytosis and improves its intracellular survival. Importantly, a monoclonal antibody targeting SBP2' conferred significant immunoprotection in mice. Together, these findings identify SBP2' as an important virulence factor and plasminogen-binding receptor that facilitates S. suis traversal of the blood-brain barrier.IMPORTANCEStreptococcus suis is an important zoonotic bacterial pathogen that could lead to severe damage in the central nervous system, but the mechanism underlying the breakthrough of the blood-brain barrier is still unclear. Pili are commonly considered virulence factors and subunit vaccine candidates, but no pilus structure could be observed on the surface of S. suis serotype 2. In this study, we found that the srtBCD pilus cluster, which was considered a pseudogene because of the truncation of the major pilus subunit, could be expressed, and the truncated major pilus subunit could be detected on the cell surface and be involved in the pathogenesis of S. suis serotype 2. Notably, monoclonal antibodies targeting SBP2' provide immunoprotection in mice, reducing bacterial loads and brain damage. These findings identify SBP2' as a key virulence factor and therapeutic target, offering insights into S. suis meningitis mechanisms.
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The truncated major pilin subunit SBP2' contributes to Streptococcus suis meningitis by interacting with host plasminogen. — 科研速览 Science Skim