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Nat Commun ; 12(1): 6998, 2021 12 01.
Article in English | MEDLINE | ID: mdl-34853317

ABSTRACT

Bacteria have evolved toxins to outcompete other bacteria or to hijack host cell pathways. One broad family of bacterial polymorphic toxins gathers multidomain proteins with a modular organization, comprising a C-terminal toxin domain fused to a N-terminal domain that adapts to the delivery apparatus. Polymorphic toxins include bacteriocins, contact-dependent growth inhibition systems, and specialized Hcp, VgrG, PAAR or Rhs Type VI secretion (T6SS) components. We recently described and characterized Tre23, a toxin domain fused to a T6SS-associated Rhs protein in Photorhabdus laumondii, Rhs1. Here, we show that Rhs1 forms a complex with the T6SS spike protein VgrG and the EagR chaperone. Using truncation derivatives and cross-linking mass spectrometry, we demonstrate that VgrG-EagR-Rhs1 complex formation requires the VgrG C-terminal ß-helix and the Rhs1 N-terminal region. We then report the cryo-electron-microscopy structure of the Rhs1-EagR complex, demonstrating that the Rhs1 central region forms a ß-barrel cage-like structure that encapsulates the C-terminal toxin domain, and provide evidence for processing of the Rhs1 protein through aspartyl autoproteolysis. We propose a model for Rhs1 loading on the T6SS, transport and delivery into the target cell.


Subject(s)
Bacterial Toxins/chemistry , Bacterial Toxins/metabolism , Photorhabdus/metabolism , Type VI Secretion Systems/chemistry , Adaptation, Physiological , Bacterial Proteins/chemistry , Bacterial Toxins/classification , Bacterial Toxins/genetics , Bacteriocins/chemistry , Contact Inhibition , Cryoelectron Microscopy , Mass Spectrometry , Models, Molecular , Photorhabdus/genetics , Type VI Secretion Systems/genetics , Type VI Secretion Systems/metabolism
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