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PtuA and PtuB assemble into an inflammasome-like oligomer for anti-phage defense.

Yuanyuan LiZhangfei ShenMengyuan ZhangXiao-Yuan YangSean P ClearyJiale XieIla A MaratheMarius KostelicJacelyn GreenwaldAnthony D RishVicki H WysockiChong ChenQiang ChenTian-Min FuYamei Yu
Published in: Nature structural & molecular biology (2024)
Escherichia coli Septu system, an anti-phage defense system, comprises two components: PtuA and PtuB. PtuA contains an ATPase domain, while PtuB is predicted to function as a nuclease. Here we show that PtuA and PtuB form a stable complex with a 6:2 stoichiometry. Cryo-electron microscopy structure of PtuAB reveals a distinctive horseshoe-like configuration. PtuA adopts a hexameric arrangement, organized as an asymmetric trimer of dimers, contrasting the ring-like structure by other ATPases. Notably, the three pairs of PtuA dimers assume distinct conformations and fulfill unique roles in recruiting PtuB. Our functional assays have further illuminated the importance of the oligomeric assembly of PtuAB in anti-phage defense. Moreover, we have uncovered that ATP molecules can directly bind to PtuA and inhibit the activities of PtuAB. Together, the assembly and function of the Septu system shed light on understanding other ATPase-containing systems in bacterial immunity.
Keyphrases
  • electron microscopy
  • pseudomonas aeruginosa
  • escherichia coli
  • innate immune
  • biofilm formation
  • high resolution
  • high throughput
  • cystic fibrosis
  • endoplasmic reticulum