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Identification of novel host interactors of effectors secreted by Salmonella and Citrobacter

  • Ryan L. Sontag
  • , Ernesto S. Nakayasu
  • , Roslyn N. Brown
  • , George S. Niemann
  • , Michael A. Sydor
  • , Octavio Sanchez
  • , Charles Ansong
  • , Shao Yeh Lu
  • , Hyungwon Choi
  • , Dylan Valleau
  • , Karl K. Weitz
  • , Alexei Savchenko
  • , Eric D. Cambronne
  • , Joshua N. Adkins

Research output: Contribution to journalArticlepeer-review

Abstract

Many pathogenic bacteria of the family Enterobacteriaceae use type III secretion systems to inject virulence proteins, termed "effectors," into the host cell cytosol. Although host-cellular activities of several effectors have been demonstrated, the function and host-targeted pathways of most of the effectors identified to date are largely undetermined. To gain insight into host proteins targeted by bacterial effectors, we performed coaffinity purification of host proteins from cell lysates using recombinant effectors from the Enterobacteriaceae intracellular pathogens Salmonella enterica serovar Typhimurium and Citrobacter rodentium. We identified 54 high-confidence host interactors for the Salmonella effectors GogA, GtgA, GtgE, SpvC, SrfH, SseL, SspH1, and SssB collectively and 21 interactors for the Citrobacter effectors EspT, NleA, NleG1, and NleK. We biochemically validated the interaction between the SrfH Salmonella protein and the extracellular signal-regulated kinase 2 (ERK2) host protein kinase, which revealed a role for this effector in regulating phosphorylation levels of this enzyme, which plays a central role in signal transduction.

Original languageEnglish (US)
Article numbere00032
JournalmSystems
Volume1
Issue number4
DOIs
StatePublished - Jul 1 2016

Funding

This work, including the efforts of Ryan L. Sontag, Ernesto S. Nakayasu, Roslyn N. Brown, George S. Niemann, Michael A. Sydor, Octavio Sanchez, Charles Ansong, Shao-Yeh Lu, Hyungwon Choi, Karl K. Weitz, Eric D. Cambronne, and Joshua N. Adkins, was funded by HHS | National Institutes of Health (NIH) (GM094623). This work, including the efforts of Ernesto S. Nakayasu, Charles Ansong, and Joshua N. Adkins, was funded by HHS | National Institutes of Health (NIH) (GM103493-10). This work, including the efforts of Dylan Valleau and Alexei Savchenko, was funded by HHS | National Institutes of Health (NIH) (GM094585). This research was funded in part by grants from the National Institutes of Health (grants GM094585, GM094623, and P41 GM103493-10). The work was partly performed in the Environmental Molecular Sciences Laboratory (EMSL), a DOE-BER national scientific user facility at Pacific Northwest National Laboratory (PNNL). PNNL is a multiprogram national laboratory operated by Battelle Memorial Institute for the DOE under contract DE-AC05-76RLO 1830.

FundersFunder number
Author National Institutes of Health National Institutes of Health National Institutes of Health National Institutes of Health The Bev Hartig Huntington's Disease Foundation National Institutes of HealthGM094623, P41 GM103493-10
U.S. Department of EnergyDE-AC05-76RLO 1830
National Institute of General Medical SciencesU54GM094585
Battelle
Honeywell Hometown Solutions

    Keywords

    • Affinity purification
    • Effectors
    • Mass spectrometry
    • Pathogenic bacteria
    • Protein-protein interactions
    • Type III secretion system

    ASJC Scopus subject areas

    • Microbiology
    • Physiology
    • Biochemistry
    • Ecology, Evolution, Behavior and Systematics
    • Modeling and Simulation
    • Molecular Biology
    • Genetics
    • Computer Science Applications

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