造孔毒素
溶解循环
跨膜蛋白
膜
生物物理学
低温电子显微
化学
毒素
蛋白质结构
生物
微生物毒素
生物化学
受体
遗传学
病毒
作者
Bastian Bräuning,Eva Bertosin,Florian Praetorius,Christian Ihling,Alexandra Schatt,Agnes Adler,Klaus Richter,Andrea Sinz,Hendrik Dietz,M. Groll
标识
DOI:10.1038/s41467-018-04139-2
摘要
Pore-forming toxins (PFT) are virulence factors that transform from soluble to membrane-bound states. The Yersinia YaxAB system represents a family of binary α-PFTs with orthologues in human, insect, and plant pathogens, with unknown structures. YaxAB was shown to be cytotoxic and likely involved in pathogenesis, though the molecular basis for its two-component lytic mechanism remains elusive. Here, we present crystal structures of YaxA and YaxB, together with a cryo-electron microscopy map of the YaxAB complex. Our structures reveal a pore predominantly composed of decamers of YaxA-YaxB heterodimers. Both subunits bear membrane-active moieties, but only YaxA is capable of binding to membranes by itself. YaxB can subsequently be recruited to membrane-associated YaxA and induced to present its lytic transmembrane helices. Pore formation can progress by further oligomerization of YaxA-YaxB dimers. Our results allow for a comparison between pore assemblies belonging to the wider ClyA-like family of α-PFTs, highlighting diverse pore architectures.
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