The Type VI secretion effector TpeX expands the pore-forming virulence arsenal of Pseudomonas aeruginosa

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Abstract

The type VI secretion system (T6SS) is a major weapon used by Pseudomonas aeruginosa to antagonize competing bacteria through the delivery of a diverse repertoire of toxic effectors. Although several P. aeruginosa T6SS effectors target bacterial membranes, the mechanisms underlying membrane disruption remain poorly characterized. Here, we study TpeX (PA5265), an accessory T6SS effector from P. aeruginosa PAO1 with structural similarity to the VasX pore-forming effector of Vibrio cholerae . We show that membrane-targeted TpeX exerts a bactericidal activity in Escherichia coli , resulting in dissipation of the membrane potential and loss of membrane integrity. The TpeX C-terminal region containing the predicted colicin-like transmembrane domain is sufficient to confer toxicity, although with reduced activity, supporting its role as the membrane-disrupting module. TpeX also oligomerizes upon membrane targeting, forming at least dimers, and structural modelling predicts a membrane-embedded pore compatible with the observed permeabilization phenotype. We further identify TpiX (PA5264), the protein encoded by the downstream gene, as the cognate immunity protein, which partially protects cells from TpeX toxicity and interacts with TpeX. Finally, AlphaFold 3 modelling predicts an interaction between TpeX and the HcpB-VgrG6 T6SS spike, suggesting a possible mechanism for effector recruitment and delivery. Together, our results identify TpeX as a bactericidal, colicin-like pore-forming T6SS effector whose membrane activity is controlled by a cognate immunity protein, thereby expanding the repertoire of membrane-targeting weapons used by P. aeruginosa in interbacterial competition.

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