Cargando…

Comparative Proteomic Analysis of Methanothermobacter themautotrophicus ΔH in Pure Culture and in Co-Culture with a Butyrate-Oxidizing Bacterium

To understand the physiological basis of methanogenic archaea living on interspecies H(2) transfer, the protein expression of a hydrogenotrophic methanogen, Methanothermobacter thermautotrophicus strain ΔH, was investigated in both pure culture and syntrophic coculture with an anaerobic butyrate oxi...

Descripción completa

Detalles Bibliográficos
Autores principales: Enoki, Miho, Shinzato, Naoya, Sato, Hiroaki, Nakamura, Kohei, Kamagata, Yoichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3164167/
https://www.ncbi.nlm.nih.gov/pubmed/21904627
http://dx.doi.org/10.1371/journal.pone.0024309
_version_ 1782211016728248320
author Enoki, Miho
Shinzato, Naoya
Sato, Hiroaki
Nakamura, Kohei
Kamagata, Yoichi
author_facet Enoki, Miho
Shinzato, Naoya
Sato, Hiroaki
Nakamura, Kohei
Kamagata, Yoichi
author_sort Enoki, Miho
collection PubMed
description To understand the physiological basis of methanogenic archaea living on interspecies H(2) transfer, the protein expression of a hydrogenotrophic methanogen, Methanothermobacter thermautotrophicus strain ΔH, was investigated in both pure culture and syntrophic coculture with an anaerobic butyrate oxidizer Syntrophothermus lipocalidus strain TGB-C1 as an H(2) supplier. Comparative proteomic analysis showed that global protein expression of methanogen cells in the model coculture was substantially different from that of pure cultured cells. In brief, in syntrophic coculture, although methanogenesis-driven energy generation appeared to be maintained by shifting the pathway to the alternative methyl coenzyme M reductase isozyme I and cofactor F(420)-dependent process, the machinery proteins involved in carbon fixation, amino acid synthesis, and RNA/DNA metabolisms tended to be down-regulated, indicating restrained cell growth rather than vigorous proliferation. In addition, our proteome analysis revealed that α subunits of proteasome were differentially acetylated between the two culture conditions. Since the relevant modification has been suspected to regulate proteolytic activity of the proteasome, the global protein turnover rate could be controlled under syntrophic growth conditions. To our knowledge, the present study is the first report on N-acetylation of proteasome subunits in methanogenic archaea. These results clearly indicated that physiological adaptation of hydrogenotrophic methanogens to syntrophic growth is more complicated than that of hitherto proposed.
format Online
Article
Text
id pubmed-3164167
institution National Center for Biotechnology Information
language English
publishDate 2011
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-31641672011-09-08 Comparative Proteomic Analysis of Methanothermobacter themautotrophicus ΔH in Pure Culture and in Co-Culture with a Butyrate-Oxidizing Bacterium Enoki, Miho Shinzato, Naoya Sato, Hiroaki Nakamura, Kohei Kamagata, Yoichi PLoS One Research Article To understand the physiological basis of methanogenic archaea living on interspecies H(2) transfer, the protein expression of a hydrogenotrophic methanogen, Methanothermobacter thermautotrophicus strain ΔH, was investigated in both pure culture and syntrophic coculture with an anaerobic butyrate oxidizer Syntrophothermus lipocalidus strain TGB-C1 as an H(2) supplier. Comparative proteomic analysis showed that global protein expression of methanogen cells in the model coculture was substantially different from that of pure cultured cells. In brief, in syntrophic coculture, although methanogenesis-driven energy generation appeared to be maintained by shifting the pathway to the alternative methyl coenzyme M reductase isozyme I and cofactor F(420)-dependent process, the machinery proteins involved in carbon fixation, amino acid synthesis, and RNA/DNA metabolisms tended to be down-regulated, indicating restrained cell growth rather than vigorous proliferation. In addition, our proteome analysis revealed that α subunits of proteasome were differentially acetylated between the two culture conditions. Since the relevant modification has been suspected to regulate proteolytic activity of the proteasome, the global protein turnover rate could be controlled under syntrophic growth conditions. To our knowledge, the present study is the first report on N-acetylation of proteasome subunits in methanogenic archaea. These results clearly indicated that physiological adaptation of hydrogenotrophic methanogens to syntrophic growth is more complicated than that of hitherto proposed. Public Library of Science 2011-08-31 /pmc/articles/PMC3164167/ /pubmed/21904627 http://dx.doi.org/10.1371/journal.pone.0024309 Text en Enoki et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Enoki, Miho
Shinzato, Naoya
Sato, Hiroaki
Nakamura, Kohei
Kamagata, Yoichi
Comparative Proteomic Analysis of Methanothermobacter themautotrophicus ΔH in Pure Culture and in Co-Culture with a Butyrate-Oxidizing Bacterium
title Comparative Proteomic Analysis of Methanothermobacter themautotrophicus ΔH in Pure Culture and in Co-Culture with a Butyrate-Oxidizing Bacterium
title_full Comparative Proteomic Analysis of Methanothermobacter themautotrophicus ΔH in Pure Culture and in Co-Culture with a Butyrate-Oxidizing Bacterium
title_fullStr Comparative Proteomic Analysis of Methanothermobacter themautotrophicus ΔH in Pure Culture and in Co-Culture with a Butyrate-Oxidizing Bacterium
title_full_unstemmed Comparative Proteomic Analysis of Methanothermobacter themautotrophicus ΔH in Pure Culture and in Co-Culture with a Butyrate-Oxidizing Bacterium
title_short Comparative Proteomic Analysis of Methanothermobacter themautotrophicus ΔH in Pure Culture and in Co-Culture with a Butyrate-Oxidizing Bacterium
title_sort comparative proteomic analysis of methanothermobacter themautotrophicus δh in pure culture and in co-culture with a butyrate-oxidizing bacterium
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3164167/
https://www.ncbi.nlm.nih.gov/pubmed/21904627
http://dx.doi.org/10.1371/journal.pone.0024309
work_keys_str_mv AT enokimiho comparativeproteomicanalysisofmethanothermobacterthemautotrophicusdhinpurecultureandincoculturewithabutyrateoxidizingbacterium
AT shinzatonaoya comparativeproteomicanalysisofmethanothermobacterthemautotrophicusdhinpurecultureandincoculturewithabutyrateoxidizingbacterium
AT satohiroaki comparativeproteomicanalysisofmethanothermobacterthemautotrophicusdhinpurecultureandincoculturewithabutyrateoxidizingbacterium
AT nakamurakohei comparativeproteomicanalysisofmethanothermobacterthemautotrophicusdhinpurecultureandincoculturewithabutyrateoxidizingbacterium
AT kamagatayoichi comparativeproteomicanalysisofmethanothermobacterthemautotrophicusdhinpurecultureandincoculturewithabutyrateoxidizingbacterium