首页> 美国卫生研究院文献>PLoS Pathogens >Calcium Influx Rescues Adenylate Cyclase-Hemolysin from Rapid Cell Membrane Removal and Enables Phagocyte Permeabilization by Toxin Pores
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Calcium Influx Rescues Adenylate Cyclase-Hemolysin from Rapid Cell Membrane Removal and Enables Phagocyte Permeabilization by Toxin Pores

机译:钙流从快速去除细胞膜中拯救腺苷酸环化酶-溶血素并使吞噬细胞被毒素孔透化。

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摘要

Bordetella adenylate cyclase toxin-hemolysin (CyaA) penetrates the cytoplasmic membrane of phagocytes and employs two distinct conformers to exert its multiple activities. One conformer forms cation-selective pores that permeabilize phagocyte membrane for efflux of cytosolic potassium. The other conformer conducts extracellular calcium ions across cytoplasmic membrane of cells, relocates into lipid rafts, translocates the adenylate cyclase enzyme (AC) domain into cells and converts cytosolic ATP to cAMP. We show that the calcium-conducting activity of CyaA controls the path and kinetics of endocytic removal of toxin pores from phagocyte membrane. The enzymatically inactive but calcium-conducting CyaA-AC toxoid was endocytosed via a clathrin-dependent pathway. In contrast, a doubly mutated (E570K+E581P) toxoid, unable to conduct Ca2+ into cells, was rapidly internalized by membrane macropinocytosis, unless rescued by Ca2+ influx promoted in trans by ionomycin or intact toxoid. Moreover, a fully pore-forming CyaA-ΔAC hemolysin failed to permeabilize phagocytes, unless endocytic removal of its pores from cell membrane was decelerated through Ca2+ influx promoted by molecules locked in a Ca2+-conducting conformation by the 3D1 antibody. Inhibition of endocytosis also enabled the native B. pertussis-produced CyaA to induce lysis of J774A.1 macrophages at concentrations starting from 100 ng/ml. Hence, by mediating calcium influx into cells, the translocating conformer of CyaA controls the removal of bystander toxin pores from phagocyte membrane. This triggers a positive feedback loop of exacerbated cell permeabilization, where the efflux of cellular potassium yields further decreased toxin pore removal from cell membrane and this further enhances cell permeabilization and potassium efflux.
机译:博德特氏菌腺苷酸环化酶毒素-溶血素(CyaA)穿透吞噬细胞的细胞质膜,并利用两个不同的构象异构体发挥其多种活性。一种构象体形成阳离子选择性孔,该孔可吞噬吞噬细胞膜以渗透胞质钾。另一个构象异构体跨细胞质膜传导细胞外钙离子,重新定位到脂质筏中,将腺苷酸环化酶(AC)结构域移位到细胞中,并将胞质ATP转化为cAMP。我们表明,CyaA的钙传导活性控制吞噬细胞膜毒素孔的内吞去除途径和动力学。通过网格蛋白依赖性途径将无酶活性但传导钙的CyaA-AC -类毒素内吞。相比之下,无法将Ca 2 + 传导到细胞中的双突变(E570K + E581P)类毒素被膜巨胞吞作用迅速内化,除非被Ca 2 + 大量涌入拯救由离子霉素或完整类毒素反式促进。此外,除非通过被Ca 2锁定的分子促进的Ca 2 + 内流减速,否则完全成孔的CyaA-ΔAC溶血素不能透化吞噬细胞。 3D1抗体的+ -传导构象。内吞作用的抑制还使天然百日咳博德特氏菌产生的CyaA能够诱导浓度从100 ng / ml开始的J774A.1巨噬细胞裂解。因此,通过介导钙流入细胞,CyaA的易位构象体控制了吞噬细胞膜上旁观者毒素孔的去除。这触发了加剧的细胞通透性的正反馈回路,其中细胞钾的流出进一步减少了毒素从细胞膜上的去除,这进一步增强了细胞的通透性和钾的流出。

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