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Structures of chaperone-substrate complexes docked onto the export gate in a type III secretion system.

Qiong Xing | Ke Shi | Athina Portaliou | Paolo Rossi | Anastassios Economou | Charalampos G Kalodimos
Nature communications | 2018

The flagellum and the injectisome enable bacterial locomotion and pathogenesis, respectively. These nanomachines assemble and function using a type III secretion system (T3SS). Exported proteins are delivered to the export apparatus by dedicated cytoplasmic chaperones for their transport through the membrane. The structural and mechanistic basis of this process is poorly understood. Here we report the structures of two ternary complexes among flagellar chaperones (FliT and FliS), protein substrates (the filament-capping FliD and flagellin FliC), and the export gate platform protein FlhA. The substrates do not interact directly with FlhA; however, they are required to induce a binding-competent conformation to the chaperone that exposes the recognition motif featuring a highly conserved sequence recognized by FlhA. The structural data reveal the recognition signal in a class of T3SS proteins and provide new insight into the assembly of key protein complexes at the export gate.

Pubmed ID: 29720631

Research resources used in this publication

None found

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Associated grants

  • Agency: NCRR NIH HHS, United States
    Id: S10 RR029205
  • Agency: NIGMS NIH HHS, United States
    Id: P41 GM103403
  • Agency: NIAID NIH HHS, United States
    Id: R01 AI094623
  • Agency: NIAID NIH HHS, United States
    Id: R56 AI094623
  • Agency: NIAID NIH HHS, United States
    Id: R01 AI121858

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