Literature DB >> 16237022

Expression dynamics of arsenic respiration and detoxification in Shewanella sp. strain ANA-3.

Chad W Saltikov1, Richard A Wildman, Dianne K Newman.   

Abstract

Because arsenate [As(V)] reduction by bacteria can significantly enhance arsenic mobility in the environment, it is important to be able to predict when this activity will occur. Currently, two bacterial systems are known that specifically reduce As(V), namely, a respiratory system (encoded by the arr genes) and a detoxification system (encoded by the ars genes). Here we analyze the conditions under which these two systems are expressed in Shewanella sp. strain ANA-3. The ars system is expressed under both aerobic and anaerobic conditions, whereas the arr system is only expressed anaerobically and is repressed by oxygen and nitrate. When cells are grown on As(V), the arr system is maximally induced during exponential growth, with peak expression of the ars system occurring at the beginning of stationary phase. Both the arr and ars systems are specifically induced by arsenite [As(III)], but the arr system is activated by a concentration of As(III) that is 1,000 times lower than that required for the arsC system (< or =100 nM versus < or =100 microM, respectively). A double mutant was constructed that does not reduce As(V) under any growth conditions. In this strain background, As(V) is capable of inducing the arr system at low micromolar concentrations, but it does not induce the ars system. Collectively, these results demonstrate that the two As(V) reductase systems in ANA-3 respond to different amounts and types of inorganic arsenic.

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Year:  2005        PMID: 16237022      PMCID: PMC1272973          DOI: 10.1128/JB.187.21.7390-7396.2005

Source DB:  PubMed          Journal:  J Bacteriol        ISSN: 0021-9193            Impact factor:   3.490


  26 in total

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4.  Deposition and fate of arsenic in iron- and arsenic-enriched reservoir sediments.

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Review 5.  Microbial arsenic: from geocycles to genes and enzymes.

Authors:  Rita Mukhopadhyay; Barry P Rosen; L T Phung; Simon Silver
Journal:  FEMS Microbiol Rev       Date:  2002-08       Impact factor: 16.408

Review 6.  The ecology of arsenic.

Authors:  Ronald S Oremland; John F Stolz
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7.  The ars detoxification system is advantageous but not required for As(V) respiration by the genetically tractable Shewanella species strain ANA-3.

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Review 10.  Biochemistry of arsenic detoxification.

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  26 in total

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Authors:  Julie N Murphy; Chad W Saltikov
Journal:  J Bacteriol       Date:  2007-01-05       Impact factor: 3.490

3.  Expression of Genes and Proteins Involved in Arsenic Respiration and Resistance in Dissimilatory Arsenate-Reducing Geobacter sp. Strain OR-1.

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4.  Considerations for conducting incubations to study the mechanisms of As release in reducing groundwater aquifers.

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5.  Characterization and transcription of arsenic respiration and resistance genes during in situ uranium bioremediation.

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6.  Arsenic Detoxification by Geobacter Species.

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7.  Characterization of the arsenate respiratory reductase from Shewanella sp. strain ANA-3.

Authors:  Davin Malasarn; Jennifer R Keeffe; Dianne K Newman
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8.  Lysine-91 of the tetraheme c-type cytochrome CymA is essential for quinone interaction and arsenate respiration in Shewanella sp. strain ANA-3.

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9.  The ArsR repressor mediates arsenite-dependent regulation of arsenate respiration and detoxification operons of Shewanella sp. strain ANA-3.

Authors:  Julie N Murphy; Chad W Saltikov
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10.  Biogenic formation of As-S nanotubes by diverse Shewanella strains.

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Journal:  Appl Environ Microbiol       Date:  2009-08-28       Impact factor: 4.792

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