Lumb M, Chanarin I, Perry J, Deacon R
Blood. 1985 Nov;66(5):1171-5.
The metabolism of the methyl group of 5-methyltetrahydrofolate was studied in rats in which cobalamin had been inactivated by exposure to nitrous oxide and in air-breathing control animals. Methylfolate labeled with [14C] in the methyl group and with [3H] in the pteridine-PABA portion was injected and the disappearance of [14C]H3- relative to [3H]folate was measured in liver. The half-time of the methyl group in the livers of control rats was two hours. There was no turnover of the methyl group for the first 72 hours after cobalamin inactivation. After 72 hours, there was a slow turnover of the methyl group, with a half-time of 43 hours. In control rats, it is assumed that the methyl group was metabolized by transfer to homocysteine to form methionine. In cobalamin-inactivated rats, it was shown that methylfolate was used as the substrate for forming folate polyglutamate, and analogues with 3, 4, and 5 glutamic acid residues were present. It is likely that oxidation of the methyl group by methylene tetrahydrofolate reductase occurs from folate polyglutamate containing six and seven glutamic acid residues, (Brody et al, Biochemistry 21: 276, 1982), since we were unable to demonstrate labeled methyl in longer chain analogues.
在通过暴露于氧化亚氮使钴胺素失活的大鼠以及呼吸空气的对照动物中,研究了5-甲基四氢叶酸甲基基团的代谢情况。注射了在甲基基团上标记有[¹⁴C]且在蝶啶-PABA部分标记有[³H]的甲基叶酸,并在肝脏中测量了相对于[³H]叶酸的[¹⁴C]H₃的消失情况。对照大鼠肝脏中甲基基团的半衰期为两小时。在钴胺素失活后的最初72小时内,甲基基团没有周转。72小时后,甲基基团有缓慢的周转,半衰期为43小时。在对照大鼠中,假定甲基基团通过转移至同型半胱氨酸以形成甲硫氨酸而被代谢。在钴胺素失活的大鼠中,已表明甲基叶酸被用作形成叶酸多聚谷氨酸的底物,并且存在具有3、4和5个谷氨酸残基的类似物。由于我们无法在更长链的类似物中证明有标记的甲基,所以甲基基团很可能是由含有6个和7个谷氨酸残基的叶酸多聚谷氨酸通过亚甲基四氢叶酸还原酶进行氧化的,(布罗迪等人,《生物化学》21: 276, 1982)。