Donnelly M I, Wolfe R S
J Biol Chem. 1986 Dec 15;261(35):16653-9.
Formylmethanofuran: tetrahydromethanopterin formyltransferase was purified to electrophoretic homogeneity from cells of Methanobacterium thermoautotrophicum. The enzyme is a tetramer of similar or identical subunits (Mr = 41,000). The equilibrium favors transfer of the formyl group to tetrahydromethanopterin (H4MPT) at physiological pH. The product of formyl transfer by the purified enzyme was shown by a number of criteria to be 5-formyl-H4MPT, as opposed to 10-formyl-H4MPT or 5,10-methenyl-H4MPT. Reconstitution of a portion of the methanogenic C1 cycle was effected by combining purified formyltransferase, methenyl-H4MPT cyclohydrolase, formylmethanofuran, and H4MPT to give methenyl-H4MPT. Additional reconstitution experiments established that the formyltransferase is an essential enzyme for the conversion of carbon dioxide to methane. In conjunction with previously published data (Donnelly, M.I., Escalante-Semerena, J.C., Rinehart, K. L., Jr., and Wolfe, R.S. (1985) Arch. Biochem. Biophys. 242, 430-439), these data substantiate the role of 5-formyl-H4MPT as an intermediate of methanogenesis.
四氢甲蝶呤甲酰基转移酶从嗜热自养甲烷杆菌细胞中纯化至电泳纯。该酶是由相似或相同亚基组成的四聚体(Mr = 41,000)。在生理pH值下,平衡有利于将甲酰基转移至四氢甲蝶呤(H4MPT)。通过多种标准表明,纯化酶催化甲酰基转移的产物是5-甲酰基-H4MPT,而非10-甲酰基-H4MPT或5,10-亚甲基-H4MPT。通过将纯化的甲酰基转移酶、亚甲基-H4MPT环水解酶、甲酰基甲烷呋喃和H4MPT结合以生成亚甲基-H4MPT,实现了部分产甲烷C1循环的重构。进一步的重构实验表明,甲酰基转移酶是二氧化碳转化为甲烷过程中的关键酶。结合先前发表的数据(唐纳利,M.I.,埃斯卡兰特 - 塞梅雷纳,J.C.,莱茵哈特,K.L.,Jr.,和沃尔夫,R.S.(1985年)《生物化学与生物物理学报》242,430 - 439),这些数据证实了5-甲酰基-H4MPT作为甲烷生成中间体的作用。