Department of Internal Medicine, Division of Pulmonary, Allergy, Critical Care and Sleep Medicine and the Center for Microbial Interface Biology, Ohio State University, Columbus, OH 43210, USA.
Cell Microbiol. 2010 Feb;12(2):140-7. doi: 10.1111/j.1462-5822.2009.01401.x. Epub 2009 Oct 27.
Legionella pneumophila has become a model system to decipher the non-apoptotic functions of caspases and their role in immunity. In permissive cells, the L. pneumophila-containing vacuole evades endosomal traffic and is remodelled by the endoplasmic reticulum. Evasion of the endosomes is mediated by the Dot/Icm type IV secretion system. Upon L. pneumophila infection of genetically restrictive cells such as wild-type (WT) C57Bl/6J murine macrophages, flagellin is sensed by the NOD-like receptor Nlrc4 leading to caspase-1 activation by the inflammasome complex. Then, caspase-7 is activated downstream of the Nlrc4 inflammasome, promoting non-apoptotic functions such as L. pneumophila-containing phagosome maturation and bacterial degradation. Interestingly, caspase-3 is activated in permissive cells during early stages of infection. However, caspase-3 activation does not lead to apoptosis until late stages of infection because it is associated with potent Dot/Icm-mediated anti-apoptotic stimuli that render the infected cells resistant to external apoptotic inducers. Therefore, the role of caspase-1 and non-apoptotic functions of executioner caspases are temporally and spatially modulated during infection by L. pneumophila, which determine permissiveness to intracellular bacterial proliferation. This review will examine the novel activation pathways of caspases by L. pneumophila and discuss their role in genetic restriction and permissiveness to infection.
嗜肺军团菌已成为破译细胞凋亡蛋白酶的非凋亡功能及其在免疫中的作用的模式系统。在允许的细胞中,含嗜肺军团菌的空泡逃避内体运输,并被内质网重塑。这种逃避是由 Dot/Icm 型 IV 型分泌系统介导的。在野生型(WT)C57Bl/6J 鼠巨噬细胞等遗传限制细胞中感染嗜肺军团菌时,flagellin 被 NOD 样受体 Nlrc4 感知,导致炎性小体复合物激活 caspase-1。然后,caspase-7 在 Nlrc4 炎性小体的下游被激活,促进非凋亡功能,如含嗜肺军团菌的吞噬体成熟和细菌降解。有趣的是,在感染的早期阶段,允许的细胞中也会激活 caspase-3。然而,caspase-3 的激活不会导致细胞凋亡,直到感染的后期,因为它与强大的 Dot/Icm 介导的抗凋亡刺激有关,使受感染的细胞对外部凋亡诱导剂具有抗性。因此,caspase-1 的作用和执行 caspase 的非凋亡功能在嗜肺军团菌感染过程中是时间和空间调节的,这决定了细胞对细胞内细菌增殖的允许性。本文将探讨嗜肺军团菌激活 caspase 的新途径,并讨论它们在遗传限制和感染易感性中的作用。