Cargando…

Identification of IbeR as a Stationary-Phase Regulator in Meningitic Escherichia coli K1 that Carries a Loss-of-Function Mutation in rpoS

IbeR is a regulator present in meningitic Escherichia coli strain E44 that carries a loss-of-function mutation in the stationary-phase (SP) regulatory gene rpoS. In order to determine whether IbeR is an SP regulator in E44, two-dimensional gel electrophoresis and LC-MS were used to compare the prote...

Descripción completa

Detalles Bibliográficos
Autores principales: Chi, Feng, Wang, Ying, Gallaher, Timothy K., Wu, Chun-Hua, Jong, Ambrose, Huang, Sheng-He
Formato: Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2655632/
https://www.ncbi.nlm.nih.gov/pubmed/19300523
http://dx.doi.org/10.1155/2009/520283
_version_ 1782165452784402432
author Chi, Feng
Wang, Ying
Gallaher, Timothy K.
Wu, Chun-Hua
Jong, Ambrose
Huang, Sheng-He
author_facet Chi, Feng
Wang, Ying
Gallaher, Timothy K.
Wu, Chun-Hua
Jong, Ambrose
Huang, Sheng-He
author_sort Chi, Feng
collection PubMed
description IbeR is a regulator present in meningitic Escherichia coli strain E44 that carries a loss-of-function mutation in the stationary-phase (SP) regulatory gene rpoS. In order to determine whether IbeR is an SP regulator in E44, two-dimensional gel electrophoresis and LC-MS were used to compare the proteomes of a noninvasive ibeR deletion mutant BR2 and its parent strain E44 in the SP. Four up-regulated (TufB, GapA, OmpA, AhpC) and three down-regulated (LpdA, TnaA, OpmC) proteins in BR2 were identified when compared to E44. All these proteins contribute to energy metabolism or stress resistance, which is related to SP regulation. One of the down-regulated proteins, tryptophanase (TnaA), which is regulated by RpoS in other E. coli strains, is associated with SP regulation via production of a signal molecule indole. Our studies demonstrated that TnaA was required for E44 invasion, and that indole was able to restore the noninvasive phenotype of the tnaA mutant. The production of indole was significantly reduced in BR2, indicating that ibeR is required for the indole production via tnaA. Survival studies under different stress conditions indicated that IbeR contributed to bacteria stress resistance in the SP. Taken together, IbeR is a novel regulator contributing to the SP regulation.
format Text
id pubmed-2655632
institution National Center for Biotechnology Information
language English
publishDate 2009
publisher Hindawi Publishing Corporation
record_format MEDLINE/PubMed
spelling pubmed-26556322009-03-19 Identification of IbeR as a Stationary-Phase Regulator in Meningitic Escherichia coli K1 that Carries a Loss-of-Function Mutation in rpoS Chi, Feng Wang, Ying Gallaher, Timothy K. Wu, Chun-Hua Jong, Ambrose Huang, Sheng-He J Biomed Biotechnol Research Article IbeR is a regulator present in meningitic Escherichia coli strain E44 that carries a loss-of-function mutation in the stationary-phase (SP) regulatory gene rpoS. In order to determine whether IbeR is an SP regulator in E44, two-dimensional gel electrophoresis and LC-MS were used to compare the proteomes of a noninvasive ibeR deletion mutant BR2 and its parent strain E44 in the SP. Four up-regulated (TufB, GapA, OmpA, AhpC) and three down-regulated (LpdA, TnaA, OpmC) proteins in BR2 were identified when compared to E44. All these proteins contribute to energy metabolism or stress resistance, which is related to SP regulation. One of the down-regulated proteins, tryptophanase (TnaA), which is regulated by RpoS in other E. coli strains, is associated with SP regulation via production of a signal molecule indole. Our studies demonstrated that TnaA was required for E44 invasion, and that indole was able to restore the noninvasive phenotype of the tnaA mutant. The production of indole was significantly reduced in BR2, indicating that ibeR is required for the indole production via tnaA. Survival studies under different stress conditions indicated that IbeR contributed to bacteria stress resistance in the SP. Taken together, IbeR is a novel regulator contributing to the SP regulation. Hindawi Publishing Corporation 2009 2009-03-12 /pmc/articles/PMC2655632/ /pubmed/19300523 http://dx.doi.org/10.1155/2009/520283 Text en Copyright © 2009 Feng Chi et al. This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Chi, Feng
Wang, Ying
Gallaher, Timothy K.
Wu, Chun-Hua
Jong, Ambrose
Huang, Sheng-He
Identification of IbeR as a Stationary-Phase Regulator in Meningitic Escherichia coli K1 that Carries a Loss-of-Function Mutation in rpoS
title Identification of IbeR as a Stationary-Phase Regulator in Meningitic Escherichia coli K1 that Carries a Loss-of-Function Mutation in rpoS
title_full Identification of IbeR as a Stationary-Phase Regulator in Meningitic Escherichia coli K1 that Carries a Loss-of-Function Mutation in rpoS
title_fullStr Identification of IbeR as a Stationary-Phase Regulator in Meningitic Escherichia coli K1 that Carries a Loss-of-Function Mutation in rpoS
title_full_unstemmed Identification of IbeR as a Stationary-Phase Regulator in Meningitic Escherichia coli K1 that Carries a Loss-of-Function Mutation in rpoS
title_short Identification of IbeR as a Stationary-Phase Regulator in Meningitic Escherichia coli K1 that Carries a Loss-of-Function Mutation in rpoS
title_sort identification of iber as a stationary-phase regulator in meningitic escherichia coli k1 that carries a loss-of-function mutation in rpos
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2655632/
https://www.ncbi.nlm.nih.gov/pubmed/19300523
http://dx.doi.org/10.1155/2009/520283
work_keys_str_mv AT chifeng identificationofiberasastationaryphaseregulatorinmeningiticescherichiacolik1thatcarriesalossoffunctionmutationinrpos
AT wangying identificationofiberasastationaryphaseregulatorinmeningiticescherichiacolik1thatcarriesalossoffunctionmutationinrpos
AT gallahertimothyk identificationofiberasastationaryphaseregulatorinmeningiticescherichiacolik1thatcarriesalossoffunctionmutationinrpos
AT wuchunhua identificationofiberasastationaryphaseregulatorinmeningiticescherichiacolik1thatcarriesalossoffunctionmutationinrpos
AT jongambrose identificationofiberasastationaryphaseregulatorinmeningiticescherichiacolik1thatcarriesalossoffunctionmutationinrpos
AT huangshenghe identificationofiberasastationaryphaseregulatorinmeningiticescherichiacolik1thatcarriesalossoffunctionmutationinrpos