Escalante-Semerena J C, Rinehart K L, Wolfe R S
J Biol Chem. 1984 Aug 10;259(15):9447-55.
Evidence obtained by 13C NMR spectroscopy indicates that tetrahydromethanopterin (H4MPT) serves as a carbon carrier for C1 units at the methine, methylene, and methyl levels of oxidation. All three derivatives of H4MPT served as substrates for methanogenesis by cell extracts under a hydrogen atmosphere; in each instance, methane evolved at a rate comparable to that obtained when 2-(methylthio)ethanesulfonic acid was used as the substrate. Each C1 derivative of H4MPT stimulated the reduction of CO2 as efficiently as 2-(methylthio)ethanesulfonic acid. High resolution fast atom bombardment mass spectrometry indicated that the product of the spontaneous reaction of formaldehyde with H4MPT was methylene-H4MPT, with the molecular formula C31H45N6O16P. 13C NMR spectroscopy of hexamethylenetetramine, a model compound, suggested that the methylene group in methylene-H4MPT was bound to two nitrogen atoms. Molecular formulas of C31H44N6O16P and C31H47N6O16P were assigned to methenyl-H4MPT+, and methyl-H4MPT, by high resolution fast atom bombardment mass spectrometry. 1H NMR spectroscopy of methyl-H4MPT indicated that the methyl group was bound to a nitrogen atom. Sensitivity of each derivative to oxygen was noted. Apparent extinction coefficients of H4MPT and its derivatives were recorded. Evidence for the enzymatic synthesis of methylene-H4MPT from methenyl-H4MPT+ is presented.
通过碳 - 13核磁共振光谱法获得的证据表明,四氢甲蝶呤(H4MPT)在次甲基、亚甲基和甲基氧化水平上作为C1单位的碳载体。在氢气氛围下,H4MPT的所有三种衍生物都作为细胞提取物产甲烷的底物;在每种情况下,甲烷产生的速率与使用2 - (甲硫基)乙磺酸盐作为底物时相当。H4MPT的每种C1衍生物刺激二氧化碳还原的效率与2 - (甲硫基)乙磺酸盐一样高。高分辨率快原子轰击质谱表明,甲醛与H4MPT自发反应的产物是亚甲基 - H4MPT,分子式为C31H45N6O16P。模型化合物六亚甲基四胺的碳 - 13核磁共振光谱表明,亚甲基 - H4MPT中的亚甲基与两个氮原子相连。通过高分辨率快原子轰击质谱将C31H44N6O16P和C31H47N6O16P的分子式分别指定给次甲基 - H4MPT +和甲基 - H4MPT。甲基 - H4MPT的氢 - 1核磁共振光谱表明甲基与一个氮原子相连。注意到每种衍生物对氧气的敏感性。记录了H4MPT及其衍生物的表观消光系数。本文提供了从次甲基 - H4MPT +酶促合成亚甲基 - H4MPT的证据。