Literature DB >> 10708387

The genes for erythritol catabolism are organized as an inducible operon in Brucella abortus.

F J Sangari1, J Agüero, J M García-Lobo.   

Abstract

Erythritol utilization is a characteristic of pathogenic Brucella abortus strains. The attenuated vaccine strain B19 is the only Brucella strain that is inhibited by erythritol, so a role for erythritol metabolism in virulence is suspected. A chromosomal fragment from the pathogenic strain B. abortus 2308 containing genes for the utilization of erythritol was cloned taking advantage of an erythritol-sensitive Tn5 insertion mutant. The nucleotide sequence of the complete 7714 bp fragment was determined. Four ORFs were identified in the sequence. The four genes were closely spaced, suggesting that they were organized as a single operon (the ery operon). The first gene (eryA) encoded a 519 aa putative erythritol kinase. The second gene (eryB) encoded an erythritol phosphate dehydrogenase. The function of the third gene (eryC) product was tentatively assigned as D-erythrulose-1-phosphate dehydrogenase and the fourth gene (eryD) encoded a regulator of ery operon expression. The operon promoter was located 5' to eryA, and contained an IHF (integration host factor) binding site. Transcription from this promoter was repressed by EryD, and stimulated by erythritol. Functional IHF was required for expression of the operon in Escherichia coli, suggesting a role for IHF in its regulation in B. abortus. The results obtained will be helpful in clarifying the role of erythritol metabolism in the virulence of Brucella spp.

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Year:  2000        PMID: 10708387     DOI: 10.1099/00221287-146-2-487

Source DB:  PubMed          Journal:  Microbiology        ISSN: 1350-0872            Impact factor:   2.777


  29 in total

1.  High level of B19 strain detection in Brazilian cattle semen.

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Review 2.  PATRIC: the comprehensive bacterial bioinformatics resource with a focus on human pathogenic species.

Authors:  Joseph J Gillespie; Alice R Wattam; Stephen A Cammer; Joseph L Gabbard; Maulik P Shukla; Oral Dalay; Timothy Driscoll; Deborah Hix; Shrinivasrao P Mane; Chunhong Mao; Eric K Nordberg; Mark Scott; Julie R Schulman; Eric E Snyder; Daniel E Sullivan; Chunxia Wang; Andrew Warren; Kelly P Williams; Tian Xue; Hyun Seung Yoo; Chengdong Zhang; Yan Zhang; Rebecca Will; Ronald W Kenyon; Bruno W Sobral
Journal:  Infect Immun       Date:  2011-09-06       Impact factor: 3.441

3.  Analysis of the behavior of eryC mutants of Brucella suis attenuated in macrophages.

Authors:  Sonja Burkhardt; Maria P Jiménez de Bagüés; Jean-Pierre Liautard; Stephan Köhler
Journal:  Infect Immun       Date:  2005-10       Impact factor: 3.441

4.  The analysis of the intramacrophagic virulome of Brucella suis deciphers the environment encountered by the pathogen inside the macrophage host cell.

Authors:  Stephan Kohler; Vincent Foulongne; Safia Ouahrani-Bettache; Gisele Bourg; Jacques Teyssier; Michel Ramuz; Jean-Pierre Liautard
Journal:  Proc Natl Acad Sci U S A       Date:  2002-11-18       Impact factor: 11.205

5.  Erythritol feeds the pentose phosphate pathway via three new isomerases leading to D-erythrose-4-phosphate in Brucella.

Authors:  Thibault Barbier; François Collard; Amaia Zúñiga-Ripa; Ignacio Moriyón; Thibault Godard; Judith Becker; Christoph Wittmann; Emile Van Schaftingen; Jean-Jacques Letesson
Journal:  Proc Natl Acad Sci U S A       Date:  2014-12-01       Impact factor: 11.205

6.  Expression and regulation of the ery operon of Brucella melitensis in human trophoblast cells.

Authors:  Hui Zhang; Xiaoxia Dou; Zhiqiang Li; Yu Zhang; Jing Zhang; Fei Guo; Yuanzhi Wang; Zhen Wang; Tiansen Li; Xinli Gu; Chuangfu Chen
Journal:  Exp Ther Med       Date:  2016-09-08       Impact factor: 2.447

7.  Erythritol triggers expression of virulence traits in Brucella melitensis.

Authors:  Erik Petersen; Gireesh Rajashekara; Neelima Sanakkayala; Linda Eskra; Jerome Harms; Gary Splitter
Journal:  Microbes Infect       Date:  2013-02-16       Impact factor: 2.700

8.  A potent Brucella abortus 2308 Δery live vaccine allows for the differentiation between natural and vaccinated infection.

Authors:  Junbo Zhang; Shuanghong Yin; Fei Guo; Ren Meng; Chuangfu Chen; Hui Zhang; Zhiqiang Li; Qiang Fu; Huijun Shi; Shengwei Hu; Wei Ni; Tiansen Li; Ke Zhang
Journal:  J Microbiol       Date:  2014-07-04       Impact factor: 3.422

9.  Intact purine biosynthesis pathways are required for wild-type virulence of Brucella abortus 2308 in the BALB/c mouse model.

Authors:  Rosemarie B Alcantara; Richard D A Read; Michelle Wright Valderas; Timothy D Brown; R Martin Roop
Journal:  Infect Immun       Date:  2004-08       Impact factor: 3.441

10.  Genome sequence of Brucella abortus vaccine strain S19 compared to virulent strains yields candidate virulence genes.

Authors:  Oswald R Crasta; Otto Folkerts; Zhangjun Fei; Shrinivasrao P Mane; Clive Evans; Susan Martino-Catt; Betsy Bricker; GongXin Yu; Lei Du; Bruno W Sobral
Journal:  PLoS One       Date:  2008-05-14       Impact factor: 3.240

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