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CryoEM structures of membrane pore and prepore complex reveal cytolytic mechanism of Pneumolysin

机译:膜孔和前孔复合体的CryoEM结构揭示了肺炎球菌溶血素的溶细胞机理

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摘要

Many pathogenic bacteria produce pore-forming toxins to attack and kill human cells. We have determined the 4.5 Å structure of the ~2.2 MDa pore complex of pneumolysin, the main virulence factor of Streptococcus pneumoniae, by cryoEM. The pneumolysin pore is a 400 Å ring of 42 membrane-inserted monomers. Domain 3 of the soluble toxin refolds into two ~85 Å β-hairpins that traverse the lipid bilayer and assemble into a 168-strand β-barrel. The pore complex is stabilized by salt bridges between β-hairpins of adjacent subunits and an internal α-barrel. The apolar outer barrel surface with large sidechains is immersed in the lipid bilayer, while the inner barrel surface is highly charged. Comparison of the cryoEM pore complex to the prepore structure obtained by electron cryo-tomography and the x-ray structure of the soluble form reveals the detailed mechanisms by which the toxin monomers insert into the lipid bilayer to perforate the target membrane.>DOI:
机译:许多致病细菌会产生造孔毒素,从而攻击并杀死人类细胞。我们已经通过cryoEM测定了肺炎链球菌主要毒力因子肺炎球菌溶血素〜2.2 MDa孔复合物的4.5Å结构。肺炎球菌溶血素的孔是一个42插入膜的单体的400环。可溶性毒素的结构域3折叠成两个〜85Åβ-发夹,它们穿过脂质双层并组装成168链β-桶。孔复合物通过相邻亚基的β-发夹与内部α-桶之间的盐桥稳定。具有大侧链的非极性外桶表面浸入脂质双层中,而内桶表面带电较高。将cryoEM孔复合物与通过电子冷冻断层扫描获得的前孔结构和可溶形式的x射线结构进行比较,揭示了毒素单体插入脂质双层以穿透目标膜的详细机理。> DOI :

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