Novel methylotrophic Arthrobacter and Hyphomicrobium species are described. Constitutive membrane-associated dimethylsulfone- and dimethylsulfoxide-reductases were found in Arthrobacter methylotrophus strain TGA and Hyphomicrobium sulfonivorans strain S1. Enzyme activities increased during growth with dimethyl-sulfone or dimethylsulfoxide, respectively, and different ratios of activity with different growth substrates indicated that they are separate enzymes. SDS-PAGE showed some membrane-associated polypeptides to be enhanced during growth with dimethylsulfone (54 kDa in H. sulfonivorans, 21-24 kDa, 54 kDa and 80 kDa in A. methylotrophus). Western blotting with anti-dimethylsulfoxide-reductase antibody showed cross-reaction with 54- and 21...
Oxidation of methanethiol (MT) is a significant step in the sulfur cycle. MT is an intermediate of m...
The utilization of organosulfonates as carbon sources by aerobic or nitrate-reducing bacteria usuall...
Two strains of sulfate-reducing bacteria (J.5.4.2-L4.2.8T and J.3.6.1-H7) were isolated from a pyrit...
Dimethylsulfone is a major product of the chemical oxidation in the atmosphere of the principal biog...
Dimethylsulfide (DMS) is a volatile organosulfur compound which has been implicated in the biogeoche...
Dimethylsulfide (DMS) is a volatile organosulfur compound which has been implicated in the biogeoche...
Two novel bacterial strains that can utilize methanesulfonic acid as a source of carbon and energy w...
Two novel genera of restricted facultative methylotrophs are described both Methylosulfonomonas and ...
Methylated sulfur compounds (MSCs) are a group of organosulfur compounds with various roles in agric...
Methylosulfonomonas methylovora M2 is an unusual gram-negative methylotrophic bacterium that can gro...
Methylotroph strain M2, isolated from soil, was capable of growth on methanesulphonic acid (MSA) as ...
The kinetic resolution of racemic sulfoxides by dimethyl sulfoxide (DMSO) reductases was investigate...
The reductase enzyme and the hydroxylase enzyme of the three-component methanesulfonic acid mono-oxy...
Two methylotrophic bacterial strains, TR3 and PSCH4, capable of growth on methanesulfonic acid as th...
A marine photosynthetic bacterium (strain SH1) was isolated after enrichment under phototrophic cond...
Oxidation of methanethiol (MT) is a significant step in the sulfur cycle. MT is an intermediate of m...
The utilization of organosulfonates as carbon sources by aerobic or nitrate-reducing bacteria usuall...
Two strains of sulfate-reducing bacteria (J.5.4.2-L4.2.8T and J.3.6.1-H7) were isolated from a pyrit...
Dimethylsulfone is a major product of the chemical oxidation in the atmosphere of the principal biog...
Dimethylsulfide (DMS) is a volatile organosulfur compound which has been implicated in the biogeoche...
Dimethylsulfide (DMS) is a volatile organosulfur compound which has been implicated in the biogeoche...
Two novel bacterial strains that can utilize methanesulfonic acid as a source of carbon and energy w...
Two novel genera of restricted facultative methylotrophs are described both Methylosulfonomonas and ...
Methylated sulfur compounds (MSCs) are a group of organosulfur compounds with various roles in agric...
Methylosulfonomonas methylovora M2 is an unusual gram-negative methylotrophic bacterium that can gro...
Methylotroph strain M2, isolated from soil, was capable of growth on methanesulphonic acid (MSA) as ...
The kinetic resolution of racemic sulfoxides by dimethyl sulfoxide (DMSO) reductases was investigate...
The reductase enzyme and the hydroxylase enzyme of the three-component methanesulfonic acid mono-oxy...
Two methylotrophic bacterial strains, TR3 and PSCH4, capable of growth on methanesulfonic acid as th...
A marine photosynthetic bacterium (strain SH1) was isolated after enrichment under phototrophic cond...
Oxidation of methanethiol (MT) is a significant step in the sulfur cycle. MT is an intermediate of m...
The utilization of organosulfonates as carbon sources by aerobic or nitrate-reducing bacteria usuall...
Two strains of sulfate-reducing bacteria (J.5.4.2-L4.2.8T and J.3.6.1-H7) were isolated from a pyrit...