Taming the symbiont for coexistence: a host PGRP neutralizes a bacterial symbiont toxin
Open Access
- 4 August 2010
- journal article
- Published by Wiley in Environmental Microbiology
- Vol. 12 (8) , 2190-2203
- https://doi.org/10.1111/j.1462-2920.2009.02121.x
Abstract
In horizontally transmitted mutualisms between marine animals and their bacterial partners, the host environment promotes the initial colonization by specific symbionts that it harvests from the surrounding bacterioplankton. Subsequently, the host must develop long-term tolerance to immunogenic bacterial molecules, such as peptidoglycan and lipopolysaccaride derivatives. We describe the characterization of the activity of a host peptidoglycan recognition protein (EsPGRP2) during establishment of the symbiosis between the squid Euprymna scolopes and its luminous bacterial symbiont Vibrio fischeri. Using confocal immunocytochemistry, we localized EsPGRP2 to all epithelial surfaces of the animal, and determined that it is exported in association with mucus shedding. Most notably, EsPGRP2 was released by the crypt epithelia into the extracellular spaces housing the symbionts. This translocation occurred only after the symbionts had triggered host morphogenesis, a process that is induced by exposure to the peptidoglycan monomer tracheal cytotoxin (TCT), a bacterial ‘toxin’ that is constitutively exported by V. fischeri. Enzymatic analyses demonstrated that, like many described PGRPs, EsPGRP2 has a TCT-degrading amidase activity. The timing of EsPGRP2 export into the crypts provides evidence that the host does not export this protein until after TCT induces morphogenesis, and thereafter EsPGRP2 is constantly present in the crypts ameliorating the effects of V. fischeri TCT.Keywords
This publication has 56 references indexed in Scilit:
- Peptidoglycan induces loss of a nuclear peptidoglycan recognition protein during host tissue development in a beneficial animal-bacterial symbiosisCellular Microbiology, 2009
- Mutations in ampG and Lytic Transglycosylase Genes Affect the Net Release of Peptidoglycan Monomers from Vibrio fischeriJournal of Bacteriology, 2009
- Development of a novel fluorescent substrate for Autolysin E, a bacterial type II amidaseBiochemical and Biophysical Research Communications, 2009
- PGRP-SB1: An N-acetylmuramoyl l-alanine amidase with antibacterial activityBiochemical and Biophysical Research Communications, 2006
- Breaching the great wall: peptidoglycan and microbial interactionsNature Reviews Microbiology, 2006
- Downregulation of the Drosophila Immune Response by Peptidoglycan-Recognition Proteins SC1 and SC2PLoS Pathogens, 2006
- New rfp - and pES213-Derived Tools for Analyzing Symbiotic Vibrio fischeri Reveal Patterns of Infection and lux Expression In SituApplied and Environmental Microbiology, 2006
- Microbial Factor-Mediated Development in a Host-Bacterial MutualismScience, 2004
- The Drosophila immune response against Gram-negative bacteria is mediated by a peptidoglycan recognition proteinNature, 2002
- A Transient Exposure to Symbiosis-Competent Bacteria Induces Light Organ Morphogenesis in the Host SquidThe Biological Bulletin, 1995