Literature DB >> 12805271

Mechanisms of thermal adaptation revealed from the genomes of the Antarctic Archaea Methanogenium frigidum and Methanococcoides burtonii.

Neil F W Saunders1, Torsten Thomas, Paul M G Curmi, John S Mattick, Elizabeth Kuczek, Rob Slade, John Davis, Peter D Franzmann, David Boone, Karl Rusterholtz, Robert Feldman, Chris Gates, Shellie Bench, Kevin Sowers, Kristen Kadner, Andrea Aerts, Paramvir Dehal, Chris Detter, Tijana Glavina, Susan Lucas, Paul Richardson, Frank Larimer, Loren Hauser, Miriam Land, Ricardo Cavicchioli.   

Abstract

We generated draft genome sequences for two cold-adapted Archaea, Methanogenium frigidum and Methanococcoides burtonii, to identify genotypic characteristics that distinguish them from Archaea with a higher optimal growth temperature (OGT). Comparative genomics revealed trends in amino acid and tRNA composition, and structural features of proteins. Proteins from the cold-adapted Archaea are characterized by a higher content of noncharged polar amino acids, particularly Gln and Thr and a lower content of hydrophobic amino acids, particularly Leu. Sequence data from nine methanogen genomes (OGT 15 degrees -98 degrees C) were used to generate 1111 modeled protein structures. Analysis of the models from the cold-adapted Archaea showed a strong tendency in the solvent-accessible area for more Gln, Thr, and hydrophobic residues and fewer charged residues. A cold shock domain (CSD) protein (CspA homolog) was identified in M. frigidum, two hypothetical proteins with CSD-folds in M. burtonii, and a unique winged helix DNA-binding domain protein in M. burtonii. This suggests that these types of nucleic acid binding proteins have a critical role in cold-adapted Archaea. Structural analysis of tRNA sequences from the Archaea indicated that GC content is the major factor influencing tRNA stability in hyperthermophiles, but not in the psychrophiles, mesophiles or moderate thermophiles. Below an OGT of 60 degrees C, the GC content in tRNA was largely unchanged, indicating that any requirement for flexibility of tRNA in psychrophiles is mediated by other means. This is the first time that comparisons have been performed with genome data from Archaea spanning the growth temperature extremes from psychrophiles to hyperthermophiles.

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Year:  2003        PMID: 12805271      PMCID: PMC403754          DOI: 10.1101/gr.1180903

Source DB:  PubMed          Journal:  Genome Res        ISSN: 1088-9051            Impact factor:   9.043


  52 in total

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Journal:  J Bacteriol       Date:  1997-11       Impact factor: 3.490

7.  Posttranscriptional modification of tRNA in psychrophilic bacteria.

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Journal:  Int J Syst Bacteriol       Date:  1997-10

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  64 in total

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Journal:  Proc Natl Acad Sci U S A       Date:  2005-07-25       Impact factor: 11.205

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Review 5.  Psychrophilic microorganisms: challenges for life.

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8.  A novel nuclease-ATPase (Nar71) from archaea is part of a proposed thermophilic DNA repair system.

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9.  Cold adaptation in the Antarctic Archaeon Methanococcoides burtonii involves membrane lipid unsaturation.

Authors:  David S Nichols; Matthew R Miller; Noel W Davies; Amber Goodchild; Mark Raftery; Ricardo Cavicchioli
Journal:  J Bacteriol       Date:  2004-12       Impact factor: 3.490

10.  Isolation and characterization of a stress-dependent plastidial delta12 fatty acid desaturase from the Antarctic microalga Chlorella vulgaris NJ-7.

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