Literature DB >> 19047344

Transcriptional map of respiratory versatility in the hyperthermophilic crenarchaeon Pyrobaculum aerophilum.

Aaron E Cozen1, Matthew T Weirauch, Katherine S Pollard, David L Bernick, Joshua M Stuart, Todd M Lowe.   

Abstract

Hyperthermophilic crenarchaea in the genus Pyrobaculum are notable for respiratory versatility, but relatively little is known about the genetics or regulation of crenarchaeal respiratory pathways. We measured global gene expression in Pyrobaculum aerophilum cultured with oxygen, nitrate, arsenate and ferric iron as terminal electron acceptors to identify transcriptional patterns that differentiate these pathways. We also compared genome sequences for four closely related species with diverse respiratory characteristics (Pyrobaculum arsenaticum, Pyrobaculum calidifontis, Pyrobaculum islandicum, and Thermoproteus neutrophilus) to identify genes associated with different respiratory capabilities. Specific patterns of gene expression in P. aerophilum were associated with aerobic respiration, nitrate respiration, arsenate respiration, and anoxia. Functional predictions based on these patterns include separate cytochrome oxidases for aerobic growth and oxygen scavenging, a nitric oxide-responsive transcriptional regulator, a multicopper oxidase involved in denitrification, and an archaeal arsenate respiratory reductase. We were unable to identify specific genes for iron respiration, but P. aerophilum exhibited repressive transcriptional responses to iron remarkably similar to those controlled by the ferric uptake regulator in bacteria. Together, these analyses present a genome-scale view of crenarchaeal respiratory flexibility and support a large number of functional and regulatory predictions for further investigation. The complete gene expression data set can be viewed in genomic context with the Archaeal Genome Browser at archaea.ucsc.edu.

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Year:  2008        PMID: 19047344      PMCID: PMC2632070          DOI: 10.1128/JB.00965-08

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


  64 in total

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2.  Respiration of arsenate and selenate by hyperthermophilic archaea.

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Journal:  Adv Microb Physiol       Date:  2007       Impact factor: 3.517

4.  Autoregulation of Helicobacter pylori Fur revealed by functional analysis of the iron-binding site.

Authors:  Isabel Delany; Gunther Spohn; Ana-Beatriz F Pacheco; Raffaele Ieva; Cristina Alaimo; Rino Rappuoli; Vincenzo Scarlato
Journal:  Mol Microbiol       Date:  2002-11       Impact factor: 3.501

5.  Unique presence of a manganese catalase in a hyperthermophilic archaeon, Pyrobaculum calidifontis VA1.

Authors:  Taku Amo; Haruyuki Atomi; Tadayuki Imanaka
Journal:  J Bacteriol       Date:  2002-06       Impact factor: 3.490

Review 6.  Enzymology and bioenergetics of respiratory nitrite ammonification.

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7.  Whole-genome analysis of the ammonia-oxidizing bacterium, Nitrosomonas eutropha C91: implications for niche adaptation.

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Journal:  Environ Microbiol       Date:  2007-12       Impact factor: 5.491

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9.  Constraints on anaerobic respiration in the hyperthermophilic Archaea Pyrobaculum islandicum and Pyrobaculum aerophilum.

Authors:  Lawrence F Feinberg; R Srikanth; Richard W Vachet; James F Holden
Journal:  Appl Environ Microbiol       Date:  2007-11-26       Impact factor: 4.792

Review 10.  Comparison between the nitric oxide reductase family and its aerobic relatives, the cytochrome oxidases.

Authors:  S de Vries; I Schröder
Journal:  Biochem Soc Trans       Date:  2002-08       Impact factor: 5.407

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  22 in total

1.  Complete genome sequence of strain 1860, a crenarchaeon of the genus Pyrobaculum able to grow with various electron acceptors.

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Journal:  J Bacteriol       Date:  2012-02       Impact factor: 3.490

2.  Respiratory Pathways Reconstructed by Multi-Omics Analysis in Melioribacter roseus, Residing in a Deep Thermal Aquifer of the West-Siberian Megabasin.

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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.  Metagenomic study of red biofilms from Diamante Lake reveals ancient arsenic bioenergetics in haloarchaea.

Authors:  Nicolás Rascovan; Javier Maldonado; Martín P Vazquez; María Eugenia Farías
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5.  Pyrobaculum yellowstonensis Strain WP30 Respires on Elemental Sulfur and/or Arsenate in Circumneutral Sulfidic Geothermal Sediments of Yellowstone National Park.

Authors:  Z J Jay; J P Beam; A Dohnalkova; R Lohmayer; B Bodle; B Planer-Friedrich; M Romine; W P Inskeep
Journal:  Appl Environ Microbiol       Date:  2015-06-19       Impact factor: 4.792

6.  Conserved evolutionary units in the heme-copper oxidase superfamily revealed by novel homologous protein families.

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7.  LccA, an archaeal laccase secreted as a highly stable glycoprotein into the extracellular medium by Haloferax volcanii.

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8.  Metagenomes from high-temperature chemotrophic systems reveal geochemical controls on microbial community structure and function.

Authors:  William P Inskeep; Douglas B Rusch; Zackary J Jay; Markus J Herrgard; Mark A Kozubal; Toby H Richardson; Richard E Macur; Natsuko Hamamura; Ryan deM Jennings; Bruce W Fouke; Anna-Louise Reysenbach; Frank Roberto; Mark Young; Ariel Schwartz; Eric S Boyd; Jonathan H Badger; Eric J Mathur; Alice C Ortmann; Mary Bateson; Gill Geesey; Marvin Frazier
Journal:  PLoS One       Date:  2010-03-19       Impact factor: 3.240

9.  Improving Arsenic Tolerance of Pyrococcus furiosus by Heterologous Expression of a Respiratory Arsenate Reductase.

Authors:  Dominik K Haja; Chang-Hao Wu; Olena Ponomarenko; Farris L Poole; Graham N George; Michael W W Adams
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10.  Possible Involvement of a Tetrathionate Reductase Homolog in Dissimilatory Arsenate Reduction by Anaeromyxobacter sp. Strain PSR-1.

Authors:  Fumika Muramatsu; Mimori Tonomura; Mikina Yamada; Yasuhiro Kasahara; Shigeki Yamamura; Takao Iino; Seigo Amachi
Journal:  Appl Environ Microbiol       Date:  2020-11-10       Impact factor: 4.792

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