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Killing machines: three pore-forming proteins of the immune system

机译:杀人机器:免疫系统的三种成孔蛋白

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摘要

The evolution of early multicellular eukaryotes 400–500 million years ago required a defensive strategy against microbial invasion. Pore-forming proteins containing the membrane-attack-complex-perforin (MACPF) domain were selected as the most efficient means to destroy bacteria or virally infected cells. The mechanism of pore formation by the MACPF domain is distinctive in that pore formation is purely physical and unspecific. The MACPF domain polymerizes, refolds, and inserts itself into bilayer membranes or bacterial outer cell walls. The displacement of surface lipid/carbohydrate molecules by the polymerizing MACPF domain creates clusters of large, water-filled holes that destabilize the barrier function and provide access for additional anti-bacterial or anti-viral effectors to sensitive sites that complete the destruction of the invader via enzymatic or chemical attack. The highly efficient mechanism of anti-microbial defense by a combined physical and chemical strategy using pore-forming MACPF-proteins has been retargeted during evolution of vertebrates and mammals for three purposes: (1) to kill extracellular bacteria C9/polyC9 evolved in conjunction with complement, (2) to kill virus infected and cancer cells perforin-1/polyperforin-1 CTL evolved targeted by NK and CTL, and (3) to kill intracellular bacteria transmembrane perforin-2/putative polyperforin-2 evolved targeted by phagocytic and nonphagocytic cells. Our laboratory has been involved in the discovery and description of each of the three pore-formers that will be reviewed here.
机译:400到5亿年前的早期多细胞真核生物的进化需要防御微生物入侵的防御策略。选择包含膜攻击复合物穿孔素(MACPF)域的成孔蛋白作为破坏细菌或病毒感染细胞的最有效方法。 MACPF结构域形成孔的机制的独特之处在于,孔的形成纯粹是物理的,并且是非特异性的。 MACPF结构域聚合,重新折叠,然后将自身插入双层膜或细菌外部细胞壁。聚合的MACPF域取代表面脂质/碳水化合物分子会形成簇状的,充满水的大孔,这些孔会破坏屏障功能的稳定性,并为其他抗菌或抗病毒效应子提供进入敏感部位的通道,从而完全破坏了入侵者通过酶或化学攻击。通过使用成孔MACPF蛋白的物理和化学相结合的策略来实现高效的抗微生物防御机制,已在脊椎动物和哺乳动物的进化过程中重新定位为三个目的:(1)杀死与C9 / polyC9一起进化的细胞外细菌补体;(2)杀死被NK和CTL靶向感染的病毒和癌细胞perforin-1 / polyperforin-1 CTL;(3)杀死吞噬性和非吞噬性靶向的细胞内细菌跨膜穿孔素2 /假定的polyperforin-2细胞。我们的实验室参与了对三种造孔剂的发现和描述,将在这里进行综述。

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