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Common architecture of Tc toxins from human and insect pathogenic bacteria

机译:来自人类和昆虫致病菌的Tc毒素的通用结构

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摘要

Tc toxins use a syringe-like mechanism to penetrate the membrane and translocate toxic enzymes into the host cytosol. They are composed of three components: TcA, TcB, and TcC. Low-resolution structures of TcAs from different bacteria suggest a considerable difference in their architecture and possibly in their mechanism of action. Here, we present high-resolution structures of five TcAs from insect and human pathogens, which show a similar overall composition and domain organization. Essential structural features, including a trefoil protein knot, are present in all TcAs, suggesting a common mechanism of action. All TcAs form functional pores and can be combined with TcB-TcC subunits from other species to form active chimeric holotoxins. We identified a conserved ionic pair that stabilizes the shell, likely operating as a strong latch that only springs open after destabilization of other regions. Our results provide new insights into the architecture and mechanism of the Tc toxin family.
机译:Tc毒素使用注射器样机制穿透膜并将毒性酶转运到宿主细胞质中。它们由三部分组成:TcA,TcB和TcC。来自不同细菌的TcA的低分辨率结构表明它们的结构以及可能的作用机理存在很大差异。在这里,我们介绍了来自昆虫和人类病原体的五个TcA的高分辨率结构,它们显示了相似的整体组成和域组织。所有TcA中都存在基本的结构特征,包括三叶形蛋白结,提示了一种共同的作用机制。所有TcA均形成功能性孔,并可与其他物种的TcB-TcC亚基结合形成活性嵌合全毒素。我们确定了一个保守的离子对,该离子对稳定了外壳,可能充当了一个坚固的闩锁,只有在其他区域不稳定后才会弹开。我们的结果为Tc毒素家族的结构和机制提供了新的见解。

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