Identification of sdiA-regulated genes in a mouse commensal strain of Enterobacter cloacae
Many bacteria determine their population density using quorum sensing. The most intensively studied mechanism of quorum sensing utilizes proteins of the LuxI family to synthesize a signaling molecule of the acylhomoserine lactone (AHL) type, and a protein of the LuxR family to bind AHL and regulate...
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2015-05-01
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doaj-d0bd6379ec86422a9841a6adc23c320a2020-11-24T21:29:10ZengFrontiers Media S.A.Frontiers in Cellular and Infection Microbiology2235-29882015-05-01510.3389/fcimb.2015.00047141829Identification of sdiA-regulated genes in a mouse commensal strain of Enterobacter cloacaeAnice eSabag-daigle0Anice eSabag-daigle1Jessica L. Dyszel2Jessica L. Dyszel3Juan F. Gonzalez4Juan F. Gonzalez5Mohamed M. Ali6Mohamed M. Ali7Mohamed M. Ali8Brian M. M. Ahmer9Brian M. M. Ahmer10Brian M. M. Ahmer11The Ohio State UniversityThe Ohio State UniversityThe Ohio State UniversityThe Ohio State UniversityThe Ohio State UniversityThe Ohio State UniversityThe Ohio State UniversityThe Ohio State UniversityMansoura UniversityThe Ohio State UniversityThe Ohio State UniversityThe Ohio State UniversityMany bacteria determine their population density using quorum sensing. The most intensively studied mechanism of quorum sensing utilizes proteins of the LuxI family to synthesize a signaling molecule of the acylhomoserine lactone (AHL) type, and a protein of the LuxR family to bind AHL and regulate transcription. Genes regulated by quorum sensing often encode functions that are most effective when a group of bacteria are working cooperatively (e.g., luminescence, biofilm formation, host interactions). Bacteria in the Escherichia, Salmonella, Klebsiella, and Enterobacter genera do not encode an AHL synthase but they do encode an AHL receptor of the LuxR family, SdiA. Instead of detecting their own AHL synthesis, these organisms use SdiA to detect the AHLs synthesized by other bacterial species. In this study, we used a genetic screen to identify AHL-responsive genes in a commensal Enterobacter cloacae strain that was isolated from a laboratory mouse. The genes include a putative type VI secretion system, copA (a copper transporter), and fepE (extends O-antigen chain length). A new transposon mutagenesis strategy and suicide vectors were used to construct an sdiA mutant of E. cloacae. The AHL-responsiveness of all fusions was entirely sdiA-dependent, although some genes were regulated by sdiA in the absence of AHL.http://journal.frontiersin.org/Journal/10.3389/fcimb.2015.00047/fullEnterobacterQuorum SensingRegulonSdiAtransposon mutagenesisacylhomoserine lactone |
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DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Anice eSabag-daigle Anice eSabag-daigle Jessica L. Dyszel Jessica L. Dyszel Juan F. Gonzalez Juan F. Gonzalez Mohamed M. Ali Mohamed M. Ali Mohamed M. Ali Brian M. M. Ahmer Brian M. M. Ahmer Brian M. M. Ahmer |
spellingShingle |
Anice eSabag-daigle Anice eSabag-daigle Jessica L. Dyszel Jessica L. Dyszel Juan F. Gonzalez Juan F. Gonzalez Mohamed M. Ali Mohamed M. Ali Mohamed M. Ali Brian M. M. Ahmer Brian M. M. Ahmer Brian M. M. Ahmer Identification of sdiA-regulated genes in a mouse commensal strain of Enterobacter cloacae Frontiers in Cellular and Infection Microbiology Enterobacter Quorum Sensing Regulon SdiA transposon mutagenesis acylhomoserine lactone |
author_facet |
Anice eSabag-daigle Anice eSabag-daigle Jessica L. Dyszel Jessica L. Dyszel Juan F. Gonzalez Juan F. Gonzalez Mohamed M. Ali Mohamed M. Ali Mohamed M. Ali Brian M. M. Ahmer Brian M. M. Ahmer Brian M. M. Ahmer |
author_sort |
Anice eSabag-daigle |
title |
Identification of sdiA-regulated genes in a mouse commensal strain of Enterobacter cloacae |
title_short |
Identification of sdiA-regulated genes in a mouse commensal strain of Enterobacter cloacae |
title_full |
Identification of sdiA-regulated genes in a mouse commensal strain of Enterobacter cloacae |
title_fullStr |
Identification of sdiA-regulated genes in a mouse commensal strain of Enterobacter cloacae |
title_full_unstemmed |
Identification of sdiA-regulated genes in a mouse commensal strain of Enterobacter cloacae |
title_sort |
identification of sdia-regulated genes in a mouse commensal strain of enterobacter cloacae |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Cellular and Infection Microbiology |
issn |
2235-2988 |
publishDate |
2015-05-01 |
description |
Many bacteria determine their population density using quorum sensing. The most intensively studied mechanism of quorum sensing utilizes proteins of the LuxI family to synthesize a signaling molecule of the acylhomoserine lactone (AHL) type, and a protein of the LuxR family to bind AHL and regulate transcription. Genes regulated by quorum sensing often encode functions that are most effective when a group of bacteria are working cooperatively (e.g., luminescence, biofilm formation, host interactions). Bacteria in the Escherichia, Salmonella, Klebsiella, and Enterobacter genera do not encode an AHL synthase but they do encode an AHL receptor of the LuxR family, SdiA. Instead of detecting their own AHL synthesis, these organisms use SdiA to detect the AHLs synthesized by other bacterial species. In this study, we used a genetic screen to identify AHL-responsive genes in a commensal Enterobacter cloacae strain that was isolated from a laboratory mouse. The genes include a putative type VI secretion system, copA (a copper transporter), and fepE (extends O-antigen chain length). A new transposon mutagenesis strategy and suicide vectors were used to construct an sdiA mutant of E. cloacae. The AHL-responsiveness of all fusions was entirely sdiA-dependent, although some genes were regulated by sdiA in the absence of AHL. |
topic |
Enterobacter Quorum Sensing Regulon SdiA transposon mutagenesis acylhomoserine lactone |
url |
http://journal.frontiersin.org/Journal/10.3389/fcimb.2015.00047/full |
work_keys_str_mv |
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