首页> 外文期刊>Journal of bacteriology >Microbial Oxidation of Methane and Methanol: Crystallization of Methanol Dehydrogenase and Properties of Holo- and Apo-Methanol Dehydrogenase from Methylomonas methanica
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Microbial Oxidation of Methane and Methanol: Crystallization of Methanol Dehydrogenase and Properties of Holo- and Apo-Methanol Dehydrogenase from Methylomonas methanica

机译:甲烷和甲醇的微生物氧化:甲醇脱氢酶的结晶以及甲烷甲基甲烷菌的全,脱氨基甲醇脱氢酶的性质

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Procedures are described for the purification and crystallization of methanol dehydrogenase from the soluble fraction of the type I obligate methylotroph Methylomonas methanica strain S1. The crystallized enzyme is homogeneous as judged by acrylamide gel electrophoresis and ultracentrifugation. The enzyme had a high pH optimum (9.5) and required ammonium salt as an activator. In the presence of phenazine methosulfate as an electron acceptor, the enzyme catalyzed the oxidation of primary alcohols and formaldehyde. Secondary, tertiary, and aromatic alcohols were not oxidized. The molecular weight as well as subunit size of methanol dehydrogenase was 60,000, indicating that it is monomeric. The sedimentation constant (s20,w) was 3.1S. The amino acid composition of the crystallized enzyme is also presented. Antisera prepared against the crystalline enzyme were nonspecific; they cross-reacted with and inhibited the isofunctional enzyme from other obligate methylotrophic bacteria. The crystalline methanol dehydrogenase had an absorption peak at 350 nm in the visible region and weak fluorescence peaks at 440 and 470 nm due to the presence of a pteridine derivative as the prosthetic group. A procedure was developed for the preparation of apo-methanol dehydrogenase. The molecular weights, sedimentation constants, electrophoretic mobilities, and immunological properties of apo- and holo-methanol dehydrogenases are identical. Apo-methanol dehydrogenase lacked the absorption peak at 350 nm and the fluorescence peaks at 440 and 470 nm and was catalytically inactive. All attempts to reconstitute an active enzyme from apo-methanol dehydrogenase, using various pteridine derivatives, were unsuccessful.
机译:描述了从I型专性甲基营养型甲烷单胞菌甲烷甲烷菌S1的可溶性级分中纯化和结晶甲醇脱氢酶的程序。如通过丙烯酰胺凝胶电泳和超速离心所判断,结晶的酶是均质的。该酶具有较高的最适pH(9.5),并需要铵盐作为活化剂。在甲基硫酸吩嗪作为电子受体的情况下,该酶催化伯醇和甲醛的氧化。仲,叔和芳族醇没有被氧化。甲醇脱氢酶的分子量以及亚基大小为60,000,表明它是单体的。沉积常数 s 20,w 为3.1S。还显示了结晶酶的氨基酸组成。针对结晶酶制备的抗血清是非特异性的。它们与其他专性甲基营养型细菌发生交叉反应并抑制其同功酶。结晶甲醇脱氢酶在可见光区域具有在350nm处的吸收峰,在440和470nm处具有弱的荧光峰,这是由于存在蝶啶衍生物作为辅基。开发了用于制备脱辅基甲醇脱氢酶的程序。载脂蛋白和全甲醇脱氢酶的分子量,沉降常数,电泳迁移率和免疫学特性均相同。载脂甲醇脱氢酶在350 nm处没有吸收峰,在440 nm和470 nm处没有荧光峰,并且没有催化活性。使用各种蝶啶衍生物从脱辅基甲醇脱氢酶重构活性酶的所有尝试均未成功。

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