Salmonella Exploits Caspase-1 to Colonize Peyer's Patches in a Murine Typhoid Model

促炎细胞因子 微生物学 生物 沙门氏菌 肠炎沙门氏菌 半胱氨酸蛋白酶 细胞凋亡 免疫学 程序性细胞死亡 炎症 细菌 生物化学 遗传学
作者
Denise M. Monack,David Hersh,Nafisa Ghori,Donna M. Bouley,Arturo Zychlinsky,Stanley Falkow
出处
期刊:Journal of Experimental Medicine [Rockefeller University Press]
卷期号:192 (2): 249-258 被引量:222
标识
DOI:10.1084/jem.192.2.249
摘要

Salmonella typhimurium invades host macrophages and induces apoptosis and the release of mature proinflammatory cytokines. SipB, a protein translocated by Salmonella into the cytoplasm of macrophages, is required for activation of Caspase-1 (Casp-1, an interleukin [IL]-1β–converting enzyme), which is a member of a family of cysteine proteases that induce apoptosis in mammalian cells. Casp-1 is unique among caspases because it also directly cleaves the proinflammatory cytokines IL-1β and IL-18 to produce bioactive cytokines. We show here that mice lacking Casp-1 (casp-1−/− mice) had an oral S. typhimurium 50% lethal dose (LD50) that was 1,000-fold higher than that of wild-type mice. Salmonella breached the M cell barrier of casp-1−/− mice efficiently; however, there was a decrease in the number of apoptotic cells, intracellular bacteria, and the recruitment of polymorphonuclear lymphocytes in the Peyer's patches (PP) as compared with wild-type mice. Furthermore, Salmonella did not disseminate systemically in the majority of casp-1−/− mice, as demonstrated by significantly less colonization in the PP, mesenteric lymph nodes, and spleens of casp-1−/− mice after an oral dose of S. typhimurium that was 100-fold higher than the LD50. The increased resistance in casp-1−/− animals appears specific for Salmonella infection since these mice were susceptible to colonization by another enteric pathogen, Yersinia pseudotuberculosis, which normally invades the PP. These results show that Casp-1, which is both proapoptotic and proinflammatory, is essential for S. typhimurium to efficiently colonize the cecum and PP and subsequently cause systemic typhoid-like disease in mice.
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