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A rivet model for channel formation by aerolysin-like pore-forming toxins

机译:气溶素样成孔毒素形成通道的铆钉模型

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摘要

The bacterial toxin aerolysin kills cells by forming heptameric channels, of unknown structure, in the plasma membrane. Using disulfide trapping and cysteine scanning mutagenesis coupled to thiol-specific labeling on lipid bilayers, we identify a loop that lines the channel. This loop has an alternating pattern of charged and uncharged residues, suggesting that the transmembrane region has a β-barrel configuration, as observed for Staphylococcal α-toxin. Surprisingly, we found that the turn of the β-hairpin is composed of a stretch of five hydrophobic residues. We show that this hydrophobic turn drives membrane insertion of the developing channel and propose that, once the lipid bilayer has been crossed, it folds back parallel to the plane of the membrane in a rivet-like fashion. This rivet-like conformation was modeled and sequence alignments suggest that such channel riveting may operate for many other pore-forming toxins.
机译:细菌毒素气溶素通过在质膜中形成未知结构的七聚通道杀死细胞。使用二硫键捕获和半胱氨酸扫描诱变与脂质双层上的巯基特异性标记相结合,我们确定了一条在通道上排列的环。如对葡萄球菌α-毒素所观察到的,该环具有带电和不带电残基的交替模式,表明跨膜区域具有β-桶构型。令人惊讶地,我们发现β-发夹的转向由五个疏水残基的延伸组成。我们表明这种疏水性转向驱动膜插入发展渠道,并提出,一旦脂质双层已经被交叉,它就会像铆钉一样平行于膜的平面折回。对这种铆钉样构象进行了建模,序列比对表明这种通道铆接可能对许多其他成孔毒素起作用。

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