Publication

Transcriptome Analysis of Acetyl-Homoserine Lactone-Based Quorum Sensing Regulation in Yersinia pestis

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Last modified
  • 05/20/2025
Type of Material
Authors
    Christopher LaRock, Emory UniversityJing Yu, Iowa State UniversityAlexander R. Horswill, University of IowaMatthew R. Parsek, University of WashingtonF. Chris Minion, Iowa State University
Language
  • English
Date
  • 2013-04-19
Publisher
  • Public Library of Science
Publication Version
Copyright Statement
  • © 2013 LaRock et al.
License
Final Published Version (URL)
Title of Journal or Parent Work
ISSN
  • 1932-6203
Volume
  • 8
Issue
  • 4
Start Page
  • e62337
End Page
  • e62337
Grant/Funding Information
  • This work was supported by the Office of Naval Research Grant N00014-06-1-1176 to FCM, ARH, and MRP.
Supplemental Material (URL)
Abstract
  • The etiologic agent of bubonic plague, Yersinia pestis, senses self-produced, secreted chemical signals in a process named quorum sensing. Though the closely related enteric pathogen Y. pseudotuberculosis uses quorum sensing system to regulate motility, the role of quorum sensing in Y. pestis has been unclear. In this study we performed transcriptional profiling experiments to identify Y. pestis quorum sensing regulated functions. Our analysis revealed that acyl-homoserine lactone-based quorum sensing controls the expression of several metabolic functions. Maltose fermentation and the glyoxylate bypass are induced by acyl-homoserine lactone signaling. This effect was observed at 30°C, indicating a potential role for quorum sensing regulation of metabolism at temperatures below the normal mammalian temperature. It is proposed that utilization of alternative carbon sources may enhance growth and/or survival during prolonged periods in natural habitats with limited nutrient sources, contributing to maintenance of plague in nature.
Author Notes
Keywords
Research Categories
  • Biology, Microbiology
  • Biology, Genetics

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