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Oxidation of Methyl Halides by the Facultative Methylotroph Strain IMB-1

机译:兼性甲基营养型菌株IMB-1氧化甲基卤化物

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Washed cell suspensions of the facultative methylotroph strain IMB-1 grown on methyl bromide (MeBr) were able to consume methyl chloride (MeCl) and methyl iodide (MeI) as well as MeBr. Consumption of >100 μM MeBr by cells grown on glucose, acetate, or monomethylamine required induction. Induction was inhibited by chloramphenicol. However, cells had a constitutive ability to consume low concentrations (14C]formaldehyde to 14CO2 but had only a small capacity for oxidation of [14C]methanol. Preincubation of cells with MeBr did not affect either activity, but MeBr-induced cells had a greater capacity for [14C]MeBr oxidation than did cells without preincubation. Consumption of MeBr was inhibited by MeI, and MeCl consumption was inhibited by MeBr. No inhibition of MeBr consumption occurred with methyl fluoride, propyl iodide, dibromomethane, dichloromethane, or difluoromethane, and in addition cells did not oxidize any of these compounds. Cells displayed Michaelis-Menten kinetics for the various methyl halides, with apparentKs values of 190, 280, and 6,100 nM for MeBr, MeI, and MeCl, respectively. These results suggest the presence of a single oxidation enzyme system specific for methyl halides (other than methyl fluoride) which runs through formaldehyde to CO2. The ease of induction of methyl halide oxidation in strain IMB-1 should facilitate its mass culture for the purpose of reducing MeBr emissions to the atmosphere from fumigated soils.
机译:在甲基溴(MeBr)上生长的兼性甲基营养型菌株IMB-1的洗涤细胞悬液能够消耗甲基氯(MeCl)和甲基碘(MeI)以及MeBr。在葡萄糖,乙酸盐或单甲胺上生长的细胞对> 100μMMeBr的消耗需要诱导。诱导被氯霉素抑制。然而,细胞具有消耗低浓度(14C]甲醛至14CO2的本构能力,但对[14C]甲醇的氧化能力很小。 [14C] MeBr的氧化能力比未预孵育的细胞高; MeI抑制了MeBr的消耗,MeBr抑制了MeCl的消耗;氟化甲基,碘化丙啶,二溴甲烷,二氯甲烷或二氟甲烷对MeBr的消耗没有抑制作用;此外,细胞不氧化任何一种化合物,细胞对各种甲基卤化物表现出Michaelis-Menten动力学,对于MeBr,MeI和MeCl,表观Ks值分别为190、280和6100 nM。专门用于卤代甲烷(除甲基氟之外)的单一氧化酶系统,其通过甲醛转化为CO2。 ain IMB-1应该促进其大众培养,以减少熏蒸土壤向大气中排放的MeBr。

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