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- W2000335966 abstract "Methane formation from 2‐(methylthio)‐ethanesulfonate (methyl‐CoM) and H 2 by the soluble fraction from the methanogenic bacterium strain Gö1 was stimulated up to tenfold by the addition of the membrane fraction. This stimulation was observed with membranes from various methanogenic species belonging to different phylogenetic families, but not with membranes from Escherichia coli or Acetobacterium woodii . Treatment of the membranes with strong oxidants, i.e. O 2 and K 3 [Fe(CN) 6 ], or with SH reagents, i.e. Ag + , p ‐chloromercuribenzoate or iodoacetamide, caused an irreversible decrease or loss in stimulatory activity, as did heat treatment at temperatures above 78°C. Methanogenesis from methyl‐CoM with formaldehyde instead of H 2 as electron donor depended similarly on the membrane fraction. With membranes, 1 mol HCHO was oxidized to 1 mol CO 2 and allowed the formation of 2 mol CH 4 from 2 mol CH 3 ‐CoM. Without membranes, per mol of HCHO oxidized 1 mol H 2 was formed and 1 mol CH 4 was produced from CH 3 ‐CoM; the rate was 10–20% of that in the presence of membranes. When methyl‐CoM was replaced by an artificial electron acceptor system consisting of methylviologen and metronidazole, the formaldehyde‐oxidizing activity was no longer stimulated by the membrane fraction. These results demonstrate for the first time an essential function of membrane components in methanogenic electron transfer." @default.
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- W2000335966 date "1989-12-01" @default.
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- W2000335966 title "Dependence on membrane components of methanogenesis from methyl‐CoM with formaldehyde or molecular hydrogen as electron donors" @default.
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- W2000335966 doi "https://doi.org/10.1111/j.1432-1033.1989.tb15211.x" @default.
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