Isolation and characterization of a novel coenzyme Q from some methane-oxidizing bacteria

The respiratory quinone composition of 18 strains of obligate methane-utilizing bacteria was examined. All of the strains contained lipoquinones which on examination by tlc co-chromatographed with coenzyme Q. On the basis of chromatographic and physicochemical analyses the lipoquinones produced by 1...

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Published in:Biochemical and biophysical research communications Vol. 133; no. 3; p. 1125
Main Authors: Collins, M D, Green, P N
Format: Journal Article
Language:English
Published: United States 31-12-1985
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Abstract The respiratory quinone composition of 18 strains of obligate methane-utilizing bacteria was examined. All of the strains contained lipoquinones which on examination by tlc co-chromatographed with coenzyme Q. On the basis of chromatographic and physicochemical analyses the lipoquinones produced by 10 of the strains corresponded to Q-8. Reverse-phase partition and argentation hplc demonstrated the quinone produced by the remaining 8 strains did not correspond to any known coenzyme Q prenologue. On the basis of mass spectrometry, 1H and 13C nuclear magnetic resonance spectrometry the novel quinone was shown to correspond to 2,3-dimethoxy-5-methyl-6-(18-methylene-3,7, 11,15,19,23,27,31-octamethyldotriacontahepta-2,6,10,14,22,26,30 enyl-)-1, 4-benzoquinone.
AbstractList The respiratory quinone composition of 18 strains of obligate methane-utilizing bacteria was examined. All of the strains contained lipoquinones which on examination by tlc co-chromatographed with coenzyme Q. On the basis of chromatographic and physicochemical analyses the lipoquinones produced by 10 of the strains corresponded to Q-8. Reverse-phase partition and argentation hplc demonstrated the quinone produced by the remaining 8 strains did not correspond to any known coenzyme Q prenologue. On the basis of mass spectrometry, 1H and 13C nuclear magnetic resonance spectrometry the novel quinone was shown to correspond to 2,3-dimethoxy-5-methyl-6-(18-methylene-3,7, 11,15,19,23,27,31-octamethyldotriacontahepta-2,6,10,14,22,26,30 enyl-)-1, 4-benzoquinone.
Author Green, P N
Collins, M D
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Snippet The respiratory quinone composition of 18 strains of obligate methane-utilizing bacteria was examined. All of the strains contained lipoquinones which on...
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StartPage 1125
SubjectTerms Chemical Phenomena
Chemistry
Chemistry, Physical
Chromatography, High Pressure Liquid
Methylococcaceae - enzymology
Oxidation-Reduction
Ubiquinone - analysis
Ubiquinone - isolation & purification
Title Isolation and characterization of a novel coenzyme Q from some methane-oxidizing bacteria
URI https://www.ncbi.nlm.nih.gov/pubmed/3936502
Volume 133
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