Cold Adaptation in the Antarctic Archaeon, Methanococcoides burtonii , Involves Membrane Lipid Unsaturation

Direct analysis of membrane lipids by liquid chromatography-electrospray mass spectrometry was used to demonstrate the role of unsaturation in ether lipids in the adaptation of Methanococcoides burtonii to low temperature. A proteomics approach using two-dimensional liquid chromatography-mass spectr...

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Published in:Journal of Bacteriology
Main Authors: Nichols, DS, Miller, MR, Davies, NW, Goodchild, A, Raftery, M, Cavicchioli, R
Format: Article in Journal/Newspaper
Language:English
Published: American Society for Microbiology 2004
Subjects:
Online Access:https://doi.org/10.1128/JB.186.24.8508-8515.2004
http://www.ncbi.nlm.nih.gov/pubmed/15576801
http://ecite.utas.edu.au/29351
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spelling ftunivtasecite:oai:ecite.utas.edu.au:29351 2023-05-15T14:03:54+02:00 Cold Adaptation in the Antarctic Archaeon, Methanococcoides burtonii , Involves Membrane Lipid Unsaturation Nichols, DS Miller, MR Davies, NW Goodchild, A Raftery, M Cavicchioli, R 2004 https://doi.org/10.1128/JB.186.24.8508-8515.2004 http://www.ncbi.nlm.nih.gov/pubmed/15576801 http://ecite.utas.edu.au/29351 en eng American Society for Microbiology http://dx.doi.org/10.1128/JB.186.24.8508-8515.2004 Nichols, DS and Miller, MR and Davies, NW and Goodchild, A and Raftery, M and Cavicchioli, R, Cold Adaptation in the Antarctic Archaeon, Methanococcoides burtonii , Involves Membrane Lipid Unsaturation, Journal of Bacteriology, 186, (24) pp. 8508-8515. ISSN 0021-9193 (2004) [Refereed Article] http://www.ncbi.nlm.nih.gov/pubmed/15576801 http://ecite.utas.edu.au/29351 Biological Sciences Biochemistry and Cell Biology Analytical Biochemistry Refereed Article PeerReviewed 2004 ftunivtasecite https://doi.org/10.1128/JB.186.24.8508-8515.2004 2019-12-13T21:09:33Z Direct analysis of membrane lipids by liquid chromatography-electrospray mass spectrometry was used to demonstrate the role of unsaturation in ether lipids in the adaptation of Methanococcoides burtonii to low temperature. A proteomics approach using two-dimensional liquid chromatography-mass spectrometry was used to identify enzymes involved in lipid biosynthesis, and a pathway for lipid biosynthesis was reconstructed from the M. burtonii draft genome sequence. The major phospholipids were archaeol phosphatidylglycerol, archaeol phosphatidylinositol, hydroxyarchaeol phosphatidylglycerol, and hydroxyarchaeol phosphatidylinositol. All phospholipid classes contained a series of unsaturated analogues, with the degree of unsaturation dependent on phospholipid class. The proportion of unsaturated lipids from cells grown at 4C was significantly higher than for cells grown at 23C. 3-Hydroxy-3-methylglutaryl coenzyme A synthase, farnesyl diphosphate synthase, and geranylgeranyl diphosphate synthase were identified in the expressed proteome, and most genes involved in the mevalonate pathway and processes leading to the formation of phosphatidylinositol and phosphatidylglycerol were identified in the genome sequence. In addition, M. burtonii encodes CDP-inositol and CDP-glycerol transferases and a number of homologs of the plant geranylgeranyl reductase. It therefore appears that the unsaturation of lipids may be due to incomplete reduction of an archaeol precursor rather than to a desaturase mechanism. This study shows that cold adaptation in M. burtonii involves specific changes in membrane lipid unsaturation. It also demonstrates that global methods of analysis for lipids and proteomics linked to a draft genome sequence can be effectively combined to infer specific mechanisms of key biological processes. Article in Journal/Newspaper Antarc* Antarctic eCite UTAS (University of Tasmania) Antarctic The Antarctic Journal of Bacteriology 186 24 8508 8515
institution Open Polar
collection eCite UTAS (University of Tasmania)
op_collection_id ftunivtasecite
language English
topic Biological Sciences
Biochemistry and Cell Biology
Analytical Biochemistry
spellingShingle Biological Sciences
Biochemistry and Cell Biology
Analytical Biochemistry
Nichols, DS
Miller, MR
Davies, NW
Goodchild, A
Raftery, M
Cavicchioli, R
Cold Adaptation in the Antarctic Archaeon, Methanococcoides burtonii , Involves Membrane Lipid Unsaturation
topic_facet Biological Sciences
Biochemistry and Cell Biology
Analytical Biochemistry
description Direct analysis of membrane lipids by liquid chromatography-electrospray mass spectrometry was used to demonstrate the role of unsaturation in ether lipids in the adaptation of Methanococcoides burtonii to low temperature. A proteomics approach using two-dimensional liquid chromatography-mass spectrometry was used to identify enzymes involved in lipid biosynthesis, and a pathway for lipid biosynthesis was reconstructed from the M. burtonii draft genome sequence. The major phospholipids were archaeol phosphatidylglycerol, archaeol phosphatidylinositol, hydroxyarchaeol phosphatidylglycerol, and hydroxyarchaeol phosphatidylinositol. All phospholipid classes contained a series of unsaturated analogues, with the degree of unsaturation dependent on phospholipid class. The proportion of unsaturated lipids from cells grown at 4C was significantly higher than for cells grown at 23C. 3-Hydroxy-3-methylglutaryl coenzyme A synthase, farnesyl diphosphate synthase, and geranylgeranyl diphosphate synthase were identified in the expressed proteome, and most genes involved in the mevalonate pathway and processes leading to the formation of phosphatidylinositol and phosphatidylglycerol were identified in the genome sequence. In addition, M. burtonii encodes CDP-inositol and CDP-glycerol transferases and a number of homologs of the plant geranylgeranyl reductase. It therefore appears that the unsaturation of lipids may be due to incomplete reduction of an archaeol precursor rather than to a desaturase mechanism. This study shows that cold adaptation in M. burtonii involves specific changes in membrane lipid unsaturation. It also demonstrates that global methods of analysis for lipids and proteomics linked to a draft genome sequence can be effectively combined to infer specific mechanisms of key biological processes.
format Article in Journal/Newspaper
author Nichols, DS
Miller, MR
Davies, NW
Goodchild, A
Raftery, M
Cavicchioli, R
author_facet Nichols, DS
Miller, MR
Davies, NW
Goodchild, A
Raftery, M
Cavicchioli, R
author_sort Nichols, DS
title Cold Adaptation in the Antarctic Archaeon, Methanococcoides burtonii , Involves Membrane Lipid Unsaturation
title_short Cold Adaptation in the Antarctic Archaeon, Methanococcoides burtonii , Involves Membrane Lipid Unsaturation
title_full Cold Adaptation in the Antarctic Archaeon, Methanococcoides burtonii , Involves Membrane Lipid Unsaturation
title_fullStr Cold Adaptation in the Antarctic Archaeon, Methanococcoides burtonii , Involves Membrane Lipid Unsaturation
title_full_unstemmed Cold Adaptation in the Antarctic Archaeon, Methanococcoides burtonii , Involves Membrane Lipid Unsaturation
title_sort cold adaptation in the antarctic archaeon, methanococcoides burtonii , involves membrane lipid unsaturation
publisher American Society for Microbiology
publishDate 2004
url https://doi.org/10.1128/JB.186.24.8508-8515.2004
http://www.ncbi.nlm.nih.gov/pubmed/15576801
http://ecite.utas.edu.au/29351
geographic Antarctic
The Antarctic
geographic_facet Antarctic
The Antarctic
genre Antarc*
Antarctic
genre_facet Antarc*
Antarctic
op_relation http://dx.doi.org/10.1128/JB.186.24.8508-8515.2004
Nichols, DS and Miller, MR and Davies, NW and Goodchild, A and Raftery, M and Cavicchioli, R, Cold Adaptation in the Antarctic Archaeon, Methanococcoides burtonii , Involves Membrane Lipid Unsaturation, Journal of Bacteriology, 186, (24) pp. 8508-8515. ISSN 0021-9193 (2004) [Refereed Article]
http://www.ncbi.nlm.nih.gov/pubmed/15576801
http://ecite.utas.edu.au/29351
op_doi https://doi.org/10.1128/JB.186.24.8508-8515.2004
container_title Journal of Bacteriology
container_volume 186
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