Coordinately regulated interbacterial antagonism defense pathways constitute a bacterial innate immune system

Author:

Ting See-Yeun,LaCourse Kaitlyn D.,Ledvina Hannah E.,Zhang Rutan,Radey Matthew C.,Kulasekara Hemantha D.,Somavanshi Rahul,Bertolli Savannah K.,Gallagher Larry A.,Kim Jennifer,Penewit Kelsi M.,Salipante Stephen J.,Xu Libin,Peterson S. Brook,Mougous Joseph D.

Abstract

AbstractBacterial survival is fraught with antagonism, including that deriving from viruses and competing bacterial cells1–3 4. It is now appreciated that bacteria mount complex antiviral responses; however, whether a coordinated defense against bacterial threats is undertaken is not well understood. Previously we showed that Pseudomonas aeruginosa possess a danger sensing pathway that is a critical fitness determinant during competition against other bacteria5, 6. Here, we conducted genome-wide screens in P. aeruginosa that reveal three conserved and widespread interbacterial antagonism resistance clusters (arc1-3). We find that although arc1-3 are coordinately activated by the Gac/Rsm danger sensing system, they function independently and provide idiosyncratic defense capabilities, distinguishing them from general stress response pathways. Our findings demonstrate that Arc3 family proteins provide specific protection against phospholipase toxins by preventing the accumulation of lysophospholipids in a manner distinct from previously characterized membrane repair systems. These findings liken the response of P. aeruginosa to bacterial threats to that of eukaryotic innate immunity, wherein threat detection leads to the activation of specialized defense systems.

Publisher

Cold Spring Harbor Laboratory

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