Weevilpgrp-lbprevents endosymbiont TCT dissemination and chronic host systemic immune activation

Author:

Maire Justin,Vincent-Monégat Carole,Balmand Séverine,Vallier Agnès,Hervé Mireille,Masson FlorentORCID,Parisot Nicolas,Vigneron AurélienORCID,Anselme Caroline,Perrin Jackie,Orlans Julien,Rahioui Isabelle,Da Silva Pedro,Fauvarque Marie-Odile,Mengin-Lecreulx Dominique,Zaidman-Rémy Anna,Heddi AbdelazizORCID

Abstract

Long-term intracellular symbiosis (or endosymbiosis) is widely distributed across invertebrates and is recognized as a major driving force in evolution. However, the maintenance of immune homeostasis in organisms chronically infected with mutualistic bacteria is a challenging task, and little is known about the molecular processes that limit endosymbiont immunogenicity and host inflammation. Here, we investigated peptidoglycan recognition protein (PGRP)-encoding genes in the cereal weevilSitophilus zeamais’s association withSodalis pierantoniusendosymbiont. We discovered that weevilpgrp-lbgenerates three transcripts via alternative splicing and differential regulation. A secreted isoform is expressed in insect tissues under pathogenic conditions through activation of the PGRP-LC receptor of the immune deficiency pathway. In addition, cytosolic and transmembrane isoforms are permanently produced within endosymbiont-bearing organ, the bacteriome, in a PGRP-LC–independent manner. Bacteriome isoforms specifically cleave the tracheal cytotoxin (TCT), a peptidoglycan monomer released by endosymbionts.pgrp-lbsilencing by RNAi results in TCT escape from the bacteriome to other insect tissues, where it chronically activates the host systemic immunity through PGRP-LC. While such immune deregulations did not impact endosymbiont load, they did negatively affect host physiology, as attested by a diminished sexual maturation of adult weevils. Whereaspgrp-lbwas first described in pathogenic interactions, this work shows that, in an endosymbiosis context, specific bacteriome isoforms have evolved, allowing endosymbiont TCT scavenging and preventing chronic endosymbiont-induced immune responses, thus promoting host homeostasis.

Funder

Agence Nationale de la Recherche

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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