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Membrane Permeabilization by Bordetella Adenylate Cyclase Toxin Involves Pores of Tunable Size

机译:博德特氏菌腺苷酸环化酶毒素对膜的透化作用涉及可调节大小的孔

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摘要

RTX (Repeats in ToXin) pore-forming toxins constitute an expanding family of exoproteins secreted by many Gram-negative bacteria and involved in infectious diseases caused by said pathogens. Despite the relevance in the host/pathogen interactions, the structure and characteristics of the lesions formed by these toxins remain enigmatic. Here, we capture the first direct nanoscale pictures of lytic pores formed by an RTX toxin, the Adenylate cyclase (ACT), secreted by the whooping cough bacterium Bordetella pertussis. We reveal that ACT associates into growing-size oligomers of variable stoichiometry and heterogeneous architecture (lines, arcs, and rings) that pierce the membrane, and that, depending on the incubation time and the toxin concentration, evolve into large enough “holes” so as to allow the flux of large molecular mass solutes, while vesicle integrity is preserved. We also resolve ACT assemblies of similar variable stoichiometry in the cell membrane of permeabilized target macrophages, proving that our model system recapitulates the process of ACT permeabilization in natural membranes. Based on our data we propose a non-concerted monomer insertion and sequential mechanism of toroidal pore formation by ACT. A size-tunable pore adds a new regulatory element to ACT-mediated cytotoxicity, with different pore sizes being putatively involved in different physiological scenarios or cell types.
机译:RTX(毒素中的重复序列)成孔毒素构成了由许多革兰氏阴性细菌分泌的,并参与由所述病原体引起的传染病的外蛋白家族的扩展家族。尽管在宿主/病原体相互作用中具有相关性,但是由这些毒素形成的病变的结构和特征仍然是令人困惑的。在这里,我们捕获了百日咳百日咳百日咳博德特氏菌分泌的RTX毒素(腺苷酸环化酶(ACT))形成的裂解孔的第一张直接纳米级图像。我们发现ACT会结合到不断增长的具有可变化学计量比和穿透膜的异质结构(线,弧和环)的低聚物,并且取决于孵育时间和毒素浓度会演变成足够大的“孔”,因此以允许大分子溶质的通量,同时保持囊泡完整性。我们还解析了透化的靶巨噬细胞的细胞膜中具有相似化学计量的ACT组装,证明了我们的模型系统概括了ACT在天然膜中的透化过程。根据我们的数据,我们提出了一个未经证实的单体插入和ACT形成环孔的顺序机制。大小可调的孔为ACT介导的细胞毒性增加了新的调节元素,不同的孔大小可能参与了不同的生理情况或细胞类型。

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