Specific gene bciD for C7-methyl oxidation in bacteriochlorophyll e biosynthesis of brown-colored green sulfur bacteria.

The gene named bciD, which encodes the enzyme involved in C7-formylation in bacteriochlorophyll e biosynthesis, was found and investigated by insertional inactivation in the brown-colored green sulfur bacterium Chlorobaculum limnaeum (previously called Chlorobium phaeobacteroides). The bciD mutant c...

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Autores principales: Jiro Harada, Tadashi Mizoguchi, Souichirou Satoh, Yusuke Tsukatani, Makio Yokono, Masato Noguchi, Ayumi Tanaka, Hitoshi Tamiaki
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Publicado: Public Library of Science (PLoS) 2013
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Acceso en línea:https://doaj.org/article/2d8408580e6b4b2b93de868e767fcb5a
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spelling oai:doaj.org-article:2d8408580e6b4b2b93de868e767fcb5a2021-11-18T07:51:14ZSpecific gene bciD for C7-methyl oxidation in bacteriochlorophyll e biosynthesis of brown-colored green sulfur bacteria.1932-620310.1371/journal.pone.0060026https://doaj.org/article/2d8408580e6b4b2b93de868e767fcb5a2013-01-01T00:00:00Zhttps://www.ncbi.nlm.nih.gov/pmc/articles/pmid/23560066/pdf/?tool=EBIhttps://doaj.org/toc/1932-6203The gene named bciD, which encodes the enzyme involved in C7-formylation in bacteriochlorophyll e biosynthesis, was found and investigated by insertional inactivation in the brown-colored green sulfur bacterium Chlorobaculum limnaeum (previously called Chlorobium phaeobacteroides). The bciD mutant cells were green in color, and accumulated bacteriochlorophyll c homologs bearing the 7-methyl group, compared to C7-formylated BChl e homologs in the wild type. BChl-c homolog compositions in the mutant were further different from those in Chlorobaculum tepidum which originally produced BChl c: (3(1) S)-8-isobutyl-12-ethyl-BChl c was unusually predominant.Jiro HaradaTadashi MizoguchiSouichirou SatohYusuke TsukataniMakio YokonoMasato NoguchiAyumi TanakaHitoshi TamiakiPublic Library of Science (PLoS)articleMedicineRScienceQENPLoS ONE, Vol 8, Iss 4, p e60026 (2013)
institution DOAJ
collection DOAJ
language EN
topic Medicine
R
Science
Q
spellingShingle Medicine
R
Science
Q
Jiro Harada
Tadashi Mizoguchi
Souichirou Satoh
Yusuke Tsukatani
Makio Yokono
Masato Noguchi
Ayumi Tanaka
Hitoshi Tamiaki
Specific gene bciD for C7-methyl oxidation in bacteriochlorophyll e biosynthesis of brown-colored green sulfur bacteria.
description The gene named bciD, which encodes the enzyme involved in C7-formylation in bacteriochlorophyll e biosynthesis, was found and investigated by insertional inactivation in the brown-colored green sulfur bacterium Chlorobaculum limnaeum (previously called Chlorobium phaeobacteroides). The bciD mutant cells were green in color, and accumulated bacteriochlorophyll c homologs bearing the 7-methyl group, compared to C7-formylated BChl e homologs in the wild type. BChl-c homolog compositions in the mutant were further different from those in Chlorobaculum tepidum which originally produced BChl c: (3(1) S)-8-isobutyl-12-ethyl-BChl c was unusually predominant.
format article
author Jiro Harada
Tadashi Mizoguchi
Souichirou Satoh
Yusuke Tsukatani
Makio Yokono
Masato Noguchi
Ayumi Tanaka
Hitoshi Tamiaki
author_facet Jiro Harada
Tadashi Mizoguchi
Souichirou Satoh
Yusuke Tsukatani
Makio Yokono
Masato Noguchi
Ayumi Tanaka
Hitoshi Tamiaki
author_sort Jiro Harada
title Specific gene bciD for C7-methyl oxidation in bacteriochlorophyll e biosynthesis of brown-colored green sulfur bacteria.
title_short Specific gene bciD for C7-methyl oxidation in bacteriochlorophyll e biosynthesis of brown-colored green sulfur bacteria.
title_full Specific gene bciD for C7-methyl oxidation in bacteriochlorophyll e biosynthesis of brown-colored green sulfur bacteria.
title_fullStr Specific gene bciD for C7-methyl oxidation in bacteriochlorophyll e biosynthesis of brown-colored green sulfur bacteria.
title_full_unstemmed Specific gene bciD for C7-methyl oxidation in bacteriochlorophyll e biosynthesis of brown-colored green sulfur bacteria.
title_sort specific gene bcid for c7-methyl oxidation in bacteriochlorophyll e biosynthesis of brown-colored green sulfur bacteria.
publisher Public Library of Science (PLoS)
publishDate 2013
url https://doaj.org/article/2d8408580e6b4b2b93de868e767fcb5a
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