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Contribution of asparagine catabolism to Salmonella virulence

  • Patrick A. McLaughlin
  • , Michael McClelland
  • , Hee Jeong Yang
  • , Steffen Porwollik
  • , Lydia Bogomolnaya
  • , Juei Suei Chen
  • , Helene Andrews-Polymenis
  • , Adrianus W.M. van der Velden
  • Stony Brook University
  • University of California at Irvine
  • Texas A&M University System

Research output: Contribution to journalArticlepeer-review

12 Scopus citations

Abstract

Salmonellae are pathogenic bacteria that cause significant morbidity and mortality in humans worldwide. Salmonellae establish infection and avoid clearance by the immune system by mechanisms that are not well understood. We previously showed that L-asparaginase II produced by Salmonella enterica serovar Typhimurium (S. Typhimurium) inhibits T cell responses and mediates virulence. In addition, we previously showed that asparagine deprivation such as that mediated by L-asparaginase II of S. Typhimurium causes suppression of activation-induced T cell metabolic reprogramming. Here, we report that STM3997, which encodes a homolog of disulfide bond protein A (dsbA) of Escherichia coli, is required for L-asparaginase II stability and function. Furthermore, we report that L-asparaginase II localizes primarily to the periplasm and acts together with L-asparaginase I to provide S. Typhimurium the ability to catabolize asparagine and assimilate nitrogen. Importantly, we determined that, in a murine model of infection, S. Typhimurium lacking both L-asparaginase I and II genes competes poorly with wild-type S. Typhimurium for colonization of target tissues. Collectively, these results indicate that asparagine catabolism contributes to S. Typhimurium virulence, providing new insights into the competition for nutrients at the host-pathogen interface.

Original languageEnglish
Article numbere00740-16
JournalInfection and Immunity
Volume85
Issue number2
DOIs
StatePublished - 2017

Keywords

  • Asparaginase
  • Asparagine
  • Catabolism
  • Host response
  • Metabolism
  • Nitrogen metabolism
  • Pathogenesis
  • Salmonella
  • T cells
  • Virulence

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