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来自甲基弯曲菌OB3b的甲烷单加氧酶酶系统的纯化及性质

Purification and properties of the methane mono-oxygenase enzyme system from Methylosinus trichosporium OB3b.

作者信息

Tonge G M, Harrison D E, Higgins I J

出版信息

Biochem J. 1977 Feb 1;161(2):333-44. doi: 10.1042/bj1610333.

Abstract
  1. A three-component enzyme system that catalyses the oxidation of methane to methanol has been highly purified from Methylosinus trichosporium. 2. The components are (i) a soluble CO-binding cytochrome c, (ii) a copper-containing protein and (iii) a small protein; the mol. wts. are 13 000, 47 000 and 9400 respectively. The cytochrome component cannot be replaced by similar cytochrome purified from Pseudomonas extorquens or by horse heart cytochrome c. 3. The stoicheiometry suggests a mono-oxygenase mechanism and the specific activity with methane as substrate is 6 micronmol/min per mg of protein. 4. Other substrates rapidly oxidized are ethane, n-propane, n-butane and CO. Dimethyl ether is not a substrate. 5. The purified enzyme system utilizes ascorbate or, in the presence of partially purified M. trichosporium methanol dehydrogenase, methanol as electron donor but not NADH or NADPH. 6. Activity is highly sensitive to low concentrations of a variety of chelating agents, cyanide, 2-mercaptoethanol and dithiothreitol. 7. Activity is highly pH-dependent (optimum 6.9-7.0) and no component of the enzyme is stable to freezing. 8. The soluble CO-binding cytochrome c shows oxidase acitivity and the relationship between this and the oxygenase activity is discussed.
摘要
  1. 已从 trichosporium 甲基弯曲菌中高度纯化出一种催化甲烷氧化为甲醇的三组分酶系统。2. 这些组分分别为:(i)一种可溶性的与一氧化碳结合的细胞色素 c,(ii)一种含铜蛋白,(iii)一种小蛋白;其分子量分别为 13000、47000 和 9400。细胞色素组分不能被从 extorquens 假单胞菌中纯化出的类似细胞色素或马心细胞色素 c 所替代。3. 化学计量关系表明其为单加氧酶机制,以甲烷为底物时的比活性为每毫克蛋白质 6 微摩尔/分钟。4. 其他能快速被氧化的底物有乙烷、正丙烷、正丁烷和一氧化碳。二甲醚不是底物。5. 纯化的酶系统利用抗坏血酸,或者在存在部分纯化的 trichosporium 甲基弯曲菌甲醇脱氢酶的情况下,利用甲醇作为电子供体,但不利用 NADH 或 NADPH。6. 活性对多种低浓度螯合剂、氰化物、2 - 巯基乙醇和二硫苏糖醇高度敏感。7. 活性高度依赖于 pH(最适 pH 为 6.9 - 7.0),且酶的任何组分在冷冻时都不稳定。8. 可溶性的与一氧化碳结合的细胞色素 c 表现出氧化酶活性,并对其与加氧酶活性之间的关系进行了讨论。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a167/1164511/d52e456d9791/biochemj00518-0155-a.jpg

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