Department of Veterinary Sciences, Faculty of Veterinary Medicine, Ludwig-Maximilians-Universität München, Schönleutnerstr. 8, 85764 Oberschleißheim, Germany.
Life Sciences & Chemistry, Jacobs-University Bremen, Campus Ring 1, 28759 Bremen, Germany.
Toxins (Basel). 2020 Oct 24;12(11):672. doi: 10.3390/toxins12110672.
Hemolysin BL is a tripartite toxin responsible for a diarrheal type of food poisoning. Open questions remain regarding its mode of action, including the extent to which complex formation prior to cell binding contributes to pore-forming activity, how these complexes are composed, and the properties of the pores formed in the target cell membrane. Distinct complexes of up to 600 kDa were found on native gels, whose structure and size were primarily defined by Hbl B. Hbl L1 and L2 were also identified in these complexes using Western blotting and an LC-MS approach. LC-MS also revealed that many other proteins secreted by exist in complexes. Further, a decrease of toxic activity at temperatures ≥60 °C was shown, which was unexpectedly restored at higher temperatures. This could be attributed to a release of Hbl B monomers from tight complexation, resulting in enhanced cell binding. In contrast, Hbl L1 was rather susceptible to heat, while heat treatment of Hbl L2 seemed not to be crucial. Furthermore, Hbl-induced pores had a rather small single-channel conductance of around 200 pS and a probable channel diameter of at least 1 nm on planar lipid bilayers. These were highly instable and had a limited lifetime, and were also slightly cation-selective. Altogether, this study provides astonishing new insights into the complex mechanism of Hbl pore formation, as well as the properties of the pores.
溶血素 BL 是一种三分体毒素,可导致腹泻型食物中毒。其作用机制仍存在许多悬而未决的问题,包括细胞结合前复合物的形成在多大程度上促进成孔活性、这些复合物的组成方式,以及靶细胞膜中形成的孔的性质。在天然凝胶上发现了高达 600 kDa 的独特复合物,其结构和大小主要由 Hbl B 决定。使用 Western blot 和 LC-MS 方法也在这些复合物中鉴定出 Hbl L1 和 L2。LC-MS 还表明,存在许多其他由 分泌的蛋白质在复合物中。此外,还显示在温度≥60°C 时毒性活性降低,但在更高温度下出乎意料地恢复。这可能归因于 Hbl B 单体从紧密复合物中的释放,从而增强了细胞结合。相比之下,Hbl L1 对热更敏感,而 Hbl L2 的热处理似乎并不重要。此外,Hbl 诱导的孔在平面脂质双层上具有约 200 pS 的相当小的单通道电导和至少 1nm 的可能通道直径。这些孔非常不稳定,寿命有限,并且对阳离子具有轻微的选择性。总的来说,这项研究为 Hbl 孔形成的复杂机制以及孔的性质提供了惊人的新见解。