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Genome sequence and functional genomic analysis of the oil-degrading bacterium Oleispira antarctica

Ubiquitous bacteria from the genus Oleispira drive oil degradation in the largest environment on Earth, the cold and deep sea. Here we report the genome sequence of Oleispira antarctica and show that compared with Alcanivorax borkumensis—the paradigm of mesophilic hydrocarbonoclastic bacteria—O. ant...

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Autores principales: Kube, Michael, Chernikova, Tatyana N., Al-Ramahi, Yamal, Beloqui, Ana, Lopez-Cortez, Nieves, Guazzaroni, María-Eugenia, Heipieper, Hermann J., Klages, Sven, Kotsyurbenko, Oleg R., Langer, Ines, Nechitaylo, Taras Y., Lünsdorf, Heinrich, Fernández, Marisol, Juárez, Silvia, Ciordia, Sergio, Singer, Alexander, Kagan, Olga, Egorova, Olga, Alain Petit, Pierre, Stogios, Peter, Kim, Youngchang, Tchigvintsev, Anatoli, Flick, Robert, Denaro, Renata, Genovese, Maria, Albar, Juan P., Reva, Oleg N., Martínez-Gomariz, Montserrat, Tran, Hai, Ferrer, Manuel, Savchenko, Alexei, Yakunin, Alexander F., Yakimov, Michail M., Golyshina, Olga V., Reinhardt, Richard, Golyshin, Peter N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Pub. Group 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3759055/
https://www.ncbi.nlm.nih.gov/pubmed/23877221
http://dx.doi.org/10.1038/ncomms3156
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author Kube, Michael
Chernikova, Tatyana N.
Al-Ramahi, Yamal
Beloqui, Ana
Lopez-Cortez, Nieves
Guazzaroni, María-Eugenia
Heipieper, Hermann J.
Klages, Sven
Kotsyurbenko, Oleg R.
Langer, Ines
Nechitaylo, Taras Y.
Lünsdorf, Heinrich
Fernández, Marisol
Juárez, Silvia
Ciordia, Sergio
Singer, Alexander
Kagan, Olga
Egorova, Olga
Alain Petit, Pierre
Stogios, Peter
Kim, Youngchang
Tchigvintsev, Anatoli
Flick, Robert
Denaro, Renata
Genovese, Maria
Albar, Juan P.
Reva, Oleg N.
Martínez-Gomariz, Montserrat
Tran, Hai
Ferrer, Manuel
Savchenko, Alexei
Yakunin, Alexander F.
Yakimov, Michail M.
Golyshina, Olga V.
Reinhardt, Richard
Golyshin, Peter N.
author_facet Kube, Michael
Chernikova, Tatyana N.
Al-Ramahi, Yamal
Beloqui, Ana
Lopez-Cortez, Nieves
Guazzaroni, María-Eugenia
Heipieper, Hermann J.
Klages, Sven
Kotsyurbenko, Oleg R.
Langer, Ines
Nechitaylo, Taras Y.
Lünsdorf, Heinrich
Fernández, Marisol
Juárez, Silvia
Ciordia, Sergio
Singer, Alexander
Kagan, Olga
Egorova, Olga
Alain Petit, Pierre
Stogios, Peter
Kim, Youngchang
Tchigvintsev, Anatoli
Flick, Robert
Denaro, Renata
Genovese, Maria
Albar, Juan P.
Reva, Oleg N.
Martínez-Gomariz, Montserrat
Tran, Hai
Ferrer, Manuel
Savchenko, Alexei
Yakunin, Alexander F.
Yakimov, Michail M.
Golyshina, Olga V.
Reinhardt, Richard
Golyshin, Peter N.
author_sort Kube, Michael
collection PubMed
description Ubiquitous bacteria from the genus Oleispira drive oil degradation in the largest environment on Earth, the cold and deep sea. Here we report the genome sequence of Oleispira antarctica and show that compared with Alcanivorax borkumensis—the paradigm of mesophilic hydrocarbonoclastic bacteria—O. antarctica has a larger genome that has witnessed massive gene-transfer events. We identify an array of alkane monooxygenases, osmoprotectants, siderophores and micronutrient-scavenging pathways. We also show that at low temperatures, the main protein-folding machine Cpn60 functions as a single heptameric barrel that uses larger proteins as substrates compared with the classical double-barrel structure observed at higher temperatures. With 11 protein crystal structures, we further report the largest set of structures from one psychrotolerant organism. The most common structural feature is an increased content of surface-exposed negatively charged residues compared to their mesophilic counterparts. Our findings are relevant in the context of microbial cold-adaptation mechanisms and the development of strategies for oil-spill mitigation in cold environments.
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spelling pubmed-37590552013-09-04 Genome sequence and functional genomic analysis of the oil-degrading bacterium Oleispira antarctica Kube, Michael Chernikova, Tatyana N. Al-Ramahi, Yamal Beloqui, Ana Lopez-Cortez, Nieves Guazzaroni, María-Eugenia Heipieper, Hermann J. Klages, Sven Kotsyurbenko, Oleg R. Langer, Ines Nechitaylo, Taras Y. Lünsdorf, Heinrich Fernández, Marisol Juárez, Silvia Ciordia, Sergio Singer, Alexander Kagan, Olga Egorova, Olga Alain Petit, Pierre Stogios, Peter Kim, Youngchang Tchigvintsev, Anatoli Flick, Robert Denaro, Renata Genovese, Maria Albar, Juan P. Reva, Oleg N. Martínez-Gomariz, Montserrat Tran, Hai Ferrer, Manuel Savchenko, Alexei Yakunin, Alexander F. Yakimov, Michail M. Golyshina, Olga V. Reinhardt, Richard Golyshin, Peter N. Nat Commun Article Ubiquitous bacteria from the genus Oleispira drive oil degradation in the largest environment on Earth, the cold and deep sea. Here we report the genome sequence of Oleispira antarctica and show that compared with Alcanivorax borkumensis—the paradigm of mesophilic hydrocarbonoclastic bacteria—O. antarctica has a larger genome that has witnessed massive gene-transfer events. We identify an array of alkane monooxygenases, osmoprotectants, siderophores and micronutrient-scavenging pathways. We also show that at low temperatures, the main protein-folding machine Cpn60 functions as a single heptameric barrel that uses larger proteins as substrates compared with the classical double-barrel structure observed at higher temperatures. With 11 protein crystal structures, we further report the largest set of structures from one psychrotolerant organism. The most common structural feature is an increased content of surface-exposed negatively charged residues compared to their mesophilic counterparts. Our findings are relevant in the context of microbial cold-adaptation mechanisms and the development of strategies for oil-spill mitigation in cold environments. Nature Pub. Group 2013-07-23 /pmc/articles/PMC3759055/ /pubmed/23877221 http://dx.doi.org/10.1038/ncomms3156 Text en Copyright © 2013, Nature Publishing Group, a division of Macmillan Publishers Limited. All Rights Reserved. http://creativecommons.org/licenses/by-nc-sa/3.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-ShareAlike 3.0 Unported License. To view a copy of this license, visit http://creativecommons.org/licenses/by-nc-sa/3.0/
spellingShingle Article
Kube, Michael
Chernikova, Tatyana N.
Al-Ramahi, Yamal
Beloqui, Ana
Lopez-Cortez, Nieves
Guazzaroni, María-Eugenia
Heipieper, Hermann J.
Klages, Sven
Kotsyurbenko, Oleg R.
Langer, Ines
Nechitaylo, Taras Y.
Lünsdorf, Heinrich
Fernández, Marisol
Juárez, Silvia
Ciordia, Sergio
Singer, Alexander
Kagan, Olga
Egorova, Olga
Alain Petit, Pierre
Stogios, Peter
Kim, Youngchang
Tchigvintsev, Anatoli
Flick, Robert
Denaro, Renata
Genovese, Maria
Albar, Juan P.
Reva, Oleg N.
Martínez-Gomariz, Montserrat
Tran, Hai
Ferrer, Manuel
Savchenko, Alexei
Yakunin, Alexander F.
Yakimov, Michail M.
Golyshina, Olga V.
Reinhardt, Richard
Golyshin, Peter N.
Genome sequence and functional genomic analysis of the oil-degrading bacterium Oleispira antarctica
title Genome sequence and functional genomic analysis of the oil-degrading bacterium Oleispira antarctica
title_full Genome sequence and functional genomic analysis of the oil-degrading bacterium Oleispira antarctica
title_fullStr Genome sequence and functional genomic analysis of the oil-degrading bacterium Oleispira antarctica
title_full_unstemmed Genome sequence and functional genomic analysis of the oil-degrading bacterium Oleispira antarctica
title_short Genome sequence and functional genomic analysis of the oil-degrading bacterium Oleispira antarctica
title_sort genome sequence and functional genomic analysis of the oil-degrading bacterium oleispira antarctica
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3759055/
https://www.ncbi.nlm.nih.gov/pubmed/23877221
http://dx.doi.org/10.1038/ncomms3156
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