Literature DB >> 22653946

Periplasmic proteins encoded by VCA0261-0260 and VC2216 genes together with copA and cueR products are required for copper tolerance but not for virulence in Vibrio cholerae.

Karen Marrero1, Aniel Sánchez2, Luis Javier González2, Talena Ledón1, Arielis Rodríguez-Ulloa3, Lila Castellanos-Serra2, Celso Pérez1, Rafael Fando1.   

Abstract

The bacterial pathogen Vibrio cholerae requires colonizination of the human small intestine to cause cholera. The anaerobic and slightly acidic conditions predominating there enhance toxicity of low copper concentrations and create a selective environment for bacteria with evolved detoxifying mechanisms. We reported previously that the VCA0260, VCA0261 and VC2216 gene products were synthesized only in V. cholerae grown in microaerobiosis or anaerobiosis. Here we show that ORFs VCA0261 and VCA0260 are actually combined into a single gene encoding a 18.7 kDa protein. Bioinformatic analyses linked this protein and the VC2216 gene product to copper tolerance. Following the approach of predict-mutate and test, we describe for the first time, to our knowledge, the copper tolerance systems operating in V. cholerae. Copper susceptibility analyses of mutants in VCA0261-0260, VC2216 or in the putative copper-tolerance-related VC2215 (copA ATPase) and VC0974 (cueR), under aerobic and anaerobic growth, revealed that CopA represents the main tolerance system under both conditions. The VC2216-encoded periplasmic protein contributes to resistance only under anaerobiosis in a CopA-functional background. The locus tag VCA0261-0260 encodes a copper-inducible, CueR-dependent, periplasmic protein, which mediates tolerance in aerobiosis, but under anaerobiosis its role is only evident in CopA knock-out mutants. None of the genes involved in copper homeostasis were required for V. cholerae virulence or colonization in the mouse model. We conclude that copper tolerance in V. cholerae, which lacks orthologues of the periplasmic copper tolerance proteins CueO, CusCFBA and CueP, involves CopA and CueR proteins along with the periplasmic Cot (VCA0261-0260) and CopG (VC2216) V. cholerae homologues.

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Year:  2012        PMID: 22653946     DOI: 10.1099/mic.0.059345-0

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


  10 in total

1.  Metabolic Reprogramming of Vibrio cholerae Impaired in Respiratory NADH Oxidation Is Accompanied by Increased Copper Sensitivity.

Authors:  Charlotte Toulouse; Kristina Metesch; Jens Pfannstiel; Julia Steuber
Journal:  J Bacteriol       Date:  2018-07-10       Impact factor: 3.490

2.  The CopC Family: Structural and Bioinformatic Insights into a Diverse Group of Periplasmic Copper Binding Proteins.

Authors:  Thomas J Lawton; Grace E Kenney; Joseph D Hurley; Amy C Rosenzweig
Journal:  Biochemistry       Date:  2016-04-06       Impact factor: 3.162

3.  The bacterial copper resistance protein CopG contains a cysteine-bridged tetranuclear copper cluster.

Authors:  Andrew C Hausrath; Nicholas A Ramirez; Alan T Ly; Megan M McEvoy
Journal:  J Biol Chem       Date:  2020-06-22       Impact factor: 5.157

Review 4.  The Role of Copper and Zinc Toxicity in Innate Immune Defense against Bacterial Pathogens.

Authors:  Karrera Y Djoko; Cheryl-lynn Y Ong; Mark J Walker; Alastair G McEwan
Journal:  J Biol Chem       Date:  2015-06-08       Impact factor: 5.157

5.  Comparative differential cuproproteomes of Rhodobacter capsulatus reveal novel copper homeostasis related proteins.

Authors:  Nur Selamoglu; Özlem Önder; Yavuz Öztürk; Bahia Khalfaoui-Hassani; Crysten E Blaby-Haas; Benjamin A Garcia; Hans-Georg Koch; Fevzi Daldal
Journal:  Metallomics       Date:  2020-03-09       Impact factor: 4.526

6.  Contribution of NADH oxidase to oxidative stress tolerance and virulence of Streptococcus suis serotype 2.

Authors:  Chengkun Zheng; Sujing Ren; Jiali Xu; Xigong Zhao; Guolin Shi; Jianping Wu; Jinquan Li; Huanchun Chen; Weicheng Bei
Journal:  Virulence       Date:  2016-06-17       Impact factor: 5.882

Review 7.  Molecular basis of active copper resistance mechanisms in Gram-negative bacteria.

Authors:  Kinga Bondarczuk; Zofia Piotrowska-Seget
Journal:  Cell Biol Toxicol       Date:  2013-09-27       Impact factor: 6.691

8.  Two-Dimensional Polyacrylamide Gel Electrophoresis for Metalloprotein Analysis Based on Differential Chemical Structure Recognition by CBB Dye.

Authors:  Junko Ishikawa; Akinori Maeshima; Allyson Mellinger; Anne Durand; Marie-Line Bourbon; Daichi Higo; Christa L Colyer; Masami Shibukawa; Soufian Ouchane; Shingo Saito
Journal:  Sci Rep       Date:  2019-07-22       Impact factor: 4.379

9.  Analysis of the Genome of the Heavy Metal Resistant and Hydrocarbon-Degrading Rhizospheric Pseudomonas qingdaonensis ZCR6 Strain and Assessment of Its Plant-Growth-Promoting Traits.

Authors:  Daria Chlebek; Tomasz Płociniczak; Sara Gobetti; Agata Kumor; Katarzyna Hupert-Kocurek; Magdalena Pacwa-Płociniczak
Journal:  Int J Mol Sci       Date:  2021-12-25       Impact factor: 5.923

10.  Characterization of Acinetobacter baumannii Copper Resistance Reveals a Role in Virulence.

Authors:  Caitlin L Williams; Heather M Neu; Yonas A Alamneh; Ryan M Reddinger; Anna C Jacobs; Shweta Singh; Rania Abu-Taleb; Sarah L J Michel; Daniel V Zurawski; D Scott Merrell
Journal:  Front Microbiol       Date:  2020-02-06       Impact factor: 5.640

  10 in total

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