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Purification and Characterization of the Soluble Methane Monooxygenase of the Type II Methanotrophic Bacterium Methylocystis sp. Strain WI 14

机译:II型甲烷营养细菌甲基囊藻的可溶性甲烷单加氧酶的纯化和鉴定。 WI 14应变

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摘要

Methane monooxygenase (MMO) catalyzes the oxidation of methane to methanol as the first step of methane degradation. A soluble NAD(P)H-dependent methane monooxygenase (sMMO) from the type II methanotrophic bacterium WI 14 was purified to homogeneity. Sequencing of the 16S rDNA and comparison with that of other known methanotrophic bacteria confirmed that strain WI 14 is very close to the genus Methylocystis. The sMMO is expressed only during growth under copper limitation (<0.1 μM) and with ammonium or nitrate ions as the nitrogen source. The enzyme exhibits a low substrate specificity and is able to oxidize several alkanes and alkenes, cyclic hydrocarbons, aromatics, and halogenic aromatics. It has three components, hydroxylase, reductase and protein B, which is involved in enzyme regulation and increases sMMO activity about 10-fold. The relative molecular masses of the native components were estimated to be 229, 41, and 18 kDa, respectively. The hydroxylase contains three subunits with relative molecular masses of 57, 43, and 23 kDa, which are present in stoichiometric amounts, suggesting that the native protein has an α2β2γ2 structure. We detected 3.6 mol of iron per mol of hydroxylase by atomic absorption spectrometry. sMMO is strongly inhibited by Hg2+ ions (with a total loss of enzyme activity at 0.01 mM Hg2+) and Cu2+, Zn2+, and Ni2+ ions (95, 80, and 40% loss of activity at 1 mM ions). The complete sMMO gene sequence has been determined. sMMO genes from strain WI 14 are clustered on the chromosome and show a high degree of homology (at both the nucleotide and amino acid levels) to the corresponding genes from Methylosinus trichosporium OB3b, Methylocystis sp. strain M, and Methylococcus capsulatus (Bath).
机译:甲烷单加氧酶(MMO)催化甲烷氧化为甲醇,这是甲烷降解的第一步。 II型甲烷营养型细菌WI 14的可溶性NAD(P)H依赖性甲烷单加氧酶(sMMO)纯化至均一。对16S rDNA的测序以及与其他已知的甲烷营养细菌的比较证实,菌株WI 14非常接近于甲基囊藻属。 sMMO仅在铜限制(<0.1μM)且以铵离子或硝酸根离子为氮源的生长过程中表达。该酶显示出低的底物特异性,并且能够氧化几种烷烃和烯烃,环状烃,芳族化合物和卤代芳族化合物。它具有三个成分:羟化酶,还原酶和蛋白质B,它们参与酶的调节并使sMMO活性增加约10倍。天然组分的相对分子质量估计分别为229、41和18 kDa。羟化酶含有三个相对分子质量分别为57、43和23 kDa的亚基,它们以化学计量存在,表明该天然蛋白具有α2β2γ2结构。通过原子吸收光谱法,每摩尔羟化酶检测到3.6摩尔铁。 sMMO被Hg 2 + 离子强烈抑制(在0.01 mM Hg 2 + 时酶的总活性下降)和Cu 2 + , Zn 2 + 和Ni 2 + 离子(在1 mM离子处活性降低95%,80%和40%)。完整的sMMO基因序列已确定。来自菌株WI 14的sMMO基因聚集在染色体上,并与来自甲基毛孢菌OB3b的甲基胞藻属M3的相应基因表现出高度的同源性(在核苷酸和氨基酸水平上)。菌株M和荚膜甲基球菌(Bath)。

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