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Revisiting the membrane interaction mechanism of a membrane-damaging -barrel pore-forming toxin Vibrio cholerae cytolysin

机译:再次探讨破膜桶状成孔毒素霍乱弧菌溶血素的膜相互作用机制

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Vibrio cholerae cytolysin (VCC) permeabilizes target cell membranes by forming transmembrane oligomeric -barrel pores. VCC has been shown to associate with the target membranes via amphipathicity-driven spontaneous partitioning into the membrane environment. More specific interaction(s) of VCC with the membrane components have also been documented. In particular, specific binding of VCC with the membrane lipid components is believed to play a crucial role in determining the efficacy of the pore-formation process. However, the structural basis and the functional implications of the VCC interaction with the membrane lipids remain unclear. Here we show that the distinct loop sequences within the membrane-proximal region of VCC play critical roles to determine the functional interactions of the toxin with the membrane lipids. Alterations of the loop sequences via structure-guided mutagenesis allow amphipathicity-driven partitioning of VCC to the membrane lipid bilayer. Alterations of the loop sequences, however, block specific interactions of VCC with the membrane lipids and abort the oligomerization, membrane insertion, pore-formation and cytotoxic activity of the toxin. Present study identifies the structural signatures in VCC implicated for its functional interactions with the membrane lipid components, a process that presumably acts to drive the subsequent steps of the oligomeric -barrel pore-formation and cytotoxic responses.
机译:霍乱弧菌溶血素(VCC)通过形成跨膜寡聚体-桶状孔隙来透化靶细胞膜。 VCC已显示通过两亲性驱动的自发分配进入膜环境而与目标膜缔合。 VCC与膜成分之间更具体的相互作用也已被记录在案。特别地,认为VCC与膜脂质组分的特异性结合在确定孔形成过程的效力中起关键作用。但是,VCC与膜脂相互作用的结构基础和功能含义仍不清楚。在这里,我们表明,VCC膜近端区域内的独特环序列起着至关重要的作用,以确定毒素与膜脂质的功能相互作用。通过结构指导的诱变改变环序列允许两亲性驱动的VCC分配到膜脂质双层。然而,环序列的改变阻止了VCC与膜脂质的特异性相互作用,并中止了毒素的低聚,膜插入,孔形成和细胞毒性活性。目前的研究确定了VCC中与膜脂质成分的功能性相互作用所涉及的结构特征,该过程可能起着驱动寡聚体-桶孔形成和细胞毒性反应的后续步骤的作用。

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