Involvement of the post-transcriptional regulator Hfq in Yersinia pestis virulence.

BACKGROUND:Yersinia pestis is the causative agent of plague, which is transmitted primarily between fleas and mammals and is spread to humans through the bite of an infected flea or contact with afflicted animals. Hfq is proposed to be a global post-transcriptional regulator that acts by mediating i...

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Main Authors: Jing Geng, Yajun Song, Lei Yang, Yanyan Feng, Yefeng Qiu, Gang Li, Jingyu Guo, Yujing Bi, Yi Qu, Wang Wang, Xiaoyi Wang, Zhaobiao Guo, Ruifu Yang, Yanping Han
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2009-07-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2704395?pdf=render
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spelling doaj-b212c6b8adea48f5b4be4b747c133c132020-11-24T21:55:52ZengPublic Library of Science (PLoS)PLoS ONE1932-62032009-07-0147e621310.1371/journal.pone.0006213Involvement of the post-transcriptional regulator Hfq in Yersinia pestis virulence.Jing GengYajun SongLei YangYanyan FengYefeng QiuGang LiJingyu GuoYujing BiYi QuWang WangXiaoyi WangZhaobiao GuoRuifu YangYanping HanBACKGROUND:Yersinia pestis is the causative agent of plague, which is transmitted primarily between fleas and mammals and is spread to humans through the bite of an infected flea or contact with afflicted animals. Hfq is proposed to be a global post-transcriptional regulator that acts by mediating interactions between many regulatory small RNAs (sRNAs) and their mRNA targets. Sequence comparisons revealed that Y. pestis appears to produce a functional homologue of E. coli Hfq. METHODOLOGY AND PRINCIPAL FINDINGS:Phenotype comparisons using in vitro assays demonstrated that Y. pestis Hfq was involved in resistance to H(2)O(2), heat and polymyxin B and contributed to growth under nutrient-limiting conditions. The role of Hfq in Y. pestis virulence was also assessed using macrophage and mouse infection models, and the gene expression affected by Hfq was determined using microarray-based transcriptome and real time PCR analysis. The macrophage infection assay showed that the Y. pestis hfq deletion strain did not have any significant difference in its ability to associate with J774A.1 macrophage cells. However, hfq deletion appeared to significantly impair the ability of Y. pestis to resist phagocytosis and survive within macrophages at the initial stage of infection. Furthermore, the hfq deletion strain was highly attenuated in mice after subcutaneous or intravenous injection. Transcriptome analysis supported the results concerning the attenuated phenotype of the hfq mutant and showed that the deletion of the hfq gene resulted in significant alterations in mRNA abundance of 243 genes in more than 13 functional classes, about 23% of which are known or hypothesized to be involved in stress resistance and virulence. CONCLUSIONS AND SIGNIFICANCE:Our results indicate that Hfq is a key regulator involved in Y. pestis stress resistance, intracellular survival and pathogenesis. It appears that Hfq acts by controlling the expression of many virulence- and stress-associated genes, probably in conjunction with small noncoding RNAs.http://europepmc.org/articles/PMC2704395?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jing Geng
Yajun Song
Lei Yang
Yanyan Feng
Yefeng Qiu
Gang Li
Jingyu Guo
Yujing Bi
Yi Qu
Wang Wang
Xiaoyi Wang
Zhaobiao Guo
Ruifu Yang
Yanping Han
spellingShingle Jing Geng
Yajun Song
Lei Yang
Yanyan Feng
Yefeng Qiu
Gang Li
Jingyu Guo
Yujing Bi
Yi Qu
Wang Wang
Xiaoyi Wang
Zhaobiao Guo
Ruifu Yang
Yanping Han
Involvement of the post-transcriptional regulator Hfq in Yersinia pestis virulence.
PLoS ONE
author_facet Jing Geng
Yajun Song
Lei Yang
Yanyan Feng
Yefeng Qiu
Gang Li
Jingyu Guo
Yujing Bi
Yi Qu
Wang Wang
Xiaoyi Wang
Zhaobiao Guo
Ruifu Yang
Yanping Han
author_sort Jing Geng
title Involvement of the post-transcriptional regulator Hfq in Yersinia pestis virulence.
title_short Involvement of the post-transcriptional regulator Hfq in Yersinia pestis virulence.
title_full Involvement of the post-transcriptional regulator Hfq in Yersinia pestis virulence.
title_fullStr Involvement of the post-transcriptional regulator Hfq in Yersinia pestis virulence.
title_full_unstemmed Involvement of the post-transcriptional regulator Hfq in Yersinia pestis virulence.
title_sort involvement of the post-transcriptional regulator hfq in yersinia pestis virulence.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2009-07-01
description BACKGROUND:Yersinia pestis is the causative agent of plague, which is transmitted primarily between fleas and mammals and is spread to humans through the bite of an infected flea or contact with afflicted animals. Hfq is proposed to be a global post-transcriptional regulator that acts by mediating interactions between many regulatory small RNAs (sRNAs) and their mRNA targets. Sequence comparisons revealed that Y. pestis appears to produce a functional homologue of E. coli Hfq. METHODOLOGY AND PRINCIPAL FINDINGS:Phenotype comparisons using in vitro assays demonstrated that Y. pestis Hfq was involved in resistance to H(2)O(2), heat and polymyxin B and contributed to growth under nutrient-limiting conditions. The role of Hfq in Y. pestis virulence was also assessed using macrophage and mouse infection models, and the gene expression affected by Hfq was determined using microarray-based transcriptome and real time PCR analysis. The macrophage infection assay showed that the Y. pestis hfq deletion strain did not have any significant difference in its ability to associate with J774A.1 macrophage cells. However, hfq deletion appeared to significantly impair the ability of Y. pestis to resist phagocytosis and survive within macrophages at the initial stage of infection. Furthermore, the hfq deletion strain was highly attenuated in mice after subcutaneous or intravenous injection. Transcriptome analysis supported the results concerning the attenuated phenotype of the hfq mutant and showed that the deletion of the hfq gene resulted in significant alterations in mRNA abundance of 243 genes in more than 13 functional classes, about 23% of which are known or hypothesized to be involved in stress resistance and virulence. CONCLUSIONS AND SIGNIFICANCE:Our results indicate that Hfq is a key regulator involved in Y. pestis stress resistance, intracellular survival and pathogenesis. It appears that Hfq acts by controlling the expression of many virulence- and stress-associated genes, probably in conjunction with small noncoding RNAs.
url http://europepmc.org/articles/PMC2704395?pdf=render
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