首页> 美国卫生研究院文献>Journal of Bacteriology >Methylthiol:coenzyme M methyltransferase from Methanosarcina barkeri an enzyme of methanogenesis from dimethylsulfide and methylmercaptopropionate.
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Methylthiol:coenzyme M methyltransferase from Methanosarcina barkeri an enzyme of methanogenesis from dimethylsulfide and methylmercaptopropionate.

机译:来自巴氏甲烷八叠球菌的甲硫醇:辅酶M甲基转移酶一种由二甲基硫醚和巯基丙酸甲酯生成甲烷的酶。

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摘要

During growth on acetate, Methanosarcina barkeri expresses catabolic enzymes for other methanogenic substrates such as monomethylamine. The range of substrates used by cells grown on acetate was further explored, and it was found that cells grown on acetate also converted dimethylsulfide (DMS) and methylmercaptopropionate (MMPA) to methane. Cells or extracts of cells grown on trimethylamine or methanol did not utilize either DMS or MMPA. During growth on acetate, cultures demethylated MMPA, producing methane and mercaptopropionate. Extracts of acetate-grown cells possessed DMS- and MMPA-dependent coenzyme M (CoM) methylation activities. The activity peaks of CoM methylation with either DMS or MMPA coeluted upon gel permeation chromatography of extracts of acetate-grown cells consistent with an apparent molecular mass of 470 kDa. A 480-kDa corrinoid protein, previously demonstrated to be a CoM methylase but otherwise of unknown physiological function, was found to methylate CoM with either DMS or MMPA. MMPA was demethylated by the purified 480-kDa CoM methylase, consuming 1 mol of CoM and producing 1 mol of mercaptopropionate. DMS was demethylated by the purified protein, consuming 1 mol of CoM and producing 1 mol of methanethiol. The methylthiol:CoM methyltransferase reaction could be initiated only with the enzyme-bound corrinoid in the methylated state. CoM could demethylate, and DMS and MMPA could remethylate, the corrinoid cofactor. The monomethylamine corrinoid protein and the A isozyme of methylcobamide:CoM methyltransferase (proteins homologous to the two subunits comprising the 480-kDa CoM methylase) did not catalyze CoM methylation with methylated thiols. These results indicate that the 480-kDa corrinoid protein functions as a CoM methylase during methanogenesis from DMS or MMPA.
机译:在醋酸盐上生长的过程中,巴氏甲烷八叠球菌会表达分解代谢酶,用于其他产甲烷底物,例如单甲胺。进一步探索了在乙酸盐上生长的细胞所用底物的范围,发现在乙酸盐上生长的细胞也将二甲基硫醚(DMS)和巯基丙酸甲酯(MMPA)转化为甲烷。在三甲胺或甲醇上生长的细胞或细胞提取物未使用DMS或MMPA。在醋酸盐上生长期间,培养物使MMPA脱甲基,产生甲烷和巯基丙酸酯。醋酸盐生长的细胞提取物具有DMS和MMPA依赖性辅酶M(CoM)甲基化活性。在醋酸渗透生长的细胞提取物的凝胶渗透色谱上,用DMS或MMPA共洗脱CoM甲基化的活性峰,其表观分子量为470 kDa。 480kDa的类胡萝卜素蛋白以前被证明是CoM甲基化酶,但生理功能未知,但已被DMS或MMPA甲基化CoM。 MMPA通过纯化的480 kDa CoM甲基化酶去甲基化,消耗1 mol CoM,产生1 mol巯基丙酸酯。 DMS被纯化的蛋白质脱甲基,消耗1摩尔的CoM,产生1摩尔的甲硫醇。甲基硫醇:CoM甲基转移酶反应只能在甲基化状态下与酶结合的类海rin素引发。 CoM可以去甲基化,而DMS和MMPA可以重新甲基化,这是类皮质醇的辅因子。单甲胺类rinrinoid蛋白和甲基cobamide:CoM甲基转移酶的A同工酶(与包含480 kDa CoM甲基化酶的两个亚基同源的蛋白)不能催化甲基化硫醇的CoM甲基化。这些结果表明,在从DMS或MMPA产甲烷的过程中,480 kDa的类海藻蛋白作为CoM甲基化酶起作用。

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