Nguyen Quynh Huong, Lai Chun Heng Royce, Norris Michael J, Ng Dixon, Shah Megha, Lai Christine Chieh-Lin, Isenman David E, Moraes Trevor F
Department of Biochemistry, University of Toronto, Toronto, Ontario, Canada.
PLoS Pathog. 2025 May 6;21(5):e1012686. doi: 10.1371/journal.ppat.1012686. eCollection 2025 May.
Pasteurella multocida is the leading cause of wound infections in humans following animals' bites or scratches. This bacterium is also commonly found in the respiratory tract of many mammals and can cause serious diseases resulting in the rapid death of infected animals, especially cattle. To prevent these infections in cattle, a subunit-based vaccine utilizing the surface lipoprotein PmSLP was developed and showed remarkable protection with a single dose administration. Here, we report that PmSLP binds host complement factor I (FI) and facilitates cleavage of complement components C3b and C4b independently of any cofactors (e.g., FH, C4BP), thereby allowing the pathogen to evade host defence. Cryo-EM structure of PmSLP bound to FI reveals that PmSLP stimulates FI enzymatic activity by stabilizing the catalytic domain. This is the first time that a bacterial protein has been shown to directly activate FI independent of complement cofactors and target all arms of the complement cascade.
多杀性巴氏杆菌是动物咬伤或抓伤后人类伤口感染的主要原因。这种细菌在许多哺乳动物的呼吸道中也很常见,可导致严重疾病,致使受感染动物迅速死亡,尤其是牛。为预防牛的这些感染,开发了一种利用表面脂蛋白PmSLP的亚单位疫苗,单剂量给药显示出显著的保护作用。在此,我们报告PmSLP结合宿主补体因子I(FI),并在不依赖任何辅因子(如FH、C4BP)的情况下促进补体成分C3b和C4b的裂解,从而使病原体逃避宿主防御。与FI结合的PmSLP的冷冻电镜结构显示,PmSLP通过稳定催化结构域来刺激FI的酶活性。这是首次表明一种细菌蛋白可在不依赖补体辅因子的情况下直接激活FI,并靶向补体级联反应的所有途径。