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Porin threading drives receptor disengagement and establishes active colicin transport through Escherichia coli OmpF

Abstract:
Bacteria deploy weapons to kill their neighbours during competition for resources and to aid survival within microbiomes. Colicins were the first such antibacterial system identified, yet how these bacteriocins cross the outer membrane (OM) of Escherichia coli is unknown. Here, by solving the structures of translocation intermediates via cryo-EM and by imaging toxin import, we uncover the mechanism by which the Tol-dependent nuclease colicin E9 (ColE9) crosses the bacterial OM. We show that threading of ColE9's disordered N-terminal domain through two pores of the trimeric porin OmpF causes the colicin to disengage from its primary receptor, BtuB, and reorganises the translocon either side of the membrane. Subsequent import of ColE9 through the lumen of a single OmpF subunit is driven by the proton-motive force, which is delivered by the TolQ-TolR-TolA-TolB assembly. Our study answers longstanding questions, such as why OmpF is a better translocator than OmpC, and reconciles the mechanisms by which both Tol- and Ton-dependent bacteriocins cross the bacterial outer membrane.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.15252/embj.2021108610

Authors


More by this author
Role:
Author
ORCID:
0000-0002-4257-0162
More by this author
Role:
Author
ORCID:
0000-0001-5721-0381


Publisher:
EMBO Press
Journal:
EMBO Journal More from this journal
Volume:
40
Issue:
21
Article number:
e108610
Publication date:
2021-09-13
Acceptance date:
2021-08-17
DOI:
EISSN:
1460-2075
ISSN:
0261-4189
Pmid:
34515361


Language:
English
Keywords:
Pubs id:
1195782
Local pid:
pubs:1195782
Deposit date:
2021-11-22

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