Woodard R W, Tsai M D, Floss H G, Crooks P A, Coward J K
J Biol Chem. 1980 Oct 10;255(19):9124-7.
The steric course of the methyl group transfer catalyzed by catechol O-methyltransferase was studied using S-adenosylmethionine (AdoMet) carrying a methyl group made chiral by labeling with 1H, 2H, and 3H in an asymmetrical arrangement. Incubation of the two diastereomers of this substrate with catechol O-methyl-transferase purified from rat liver and epinephrine or protocatechuic acid as acceptor gave the corresponding methylated catechols. These were degraded to convert the methoxy group in a series of stereochemically unambiguous reactions into the methyl group of acetate, which was then analyzed for its configuration. The results indicate that the transfer of the methyl group from AdoMet to either acceptor occurs in an inversion mode. The catechol O-methyltransferase reaction thus involves a direct transfer of the methyl group from the sulfur of AdoMet to the oxygen of the catechol in an SN2 process, without a methylated enzyme intermediate.
利用携带通过以不对称排列方式用1H、2H和3H标记而具有手性甲基的S-腺苷甲硫氨酸(AdoMet),研究了儿茶酚O-甲基转移酶催化的甲基转移的立体化学过程。将该底物的两种非对映异构体与从大鼠肝脏纯化的儿茶酚O-甲基转移酶以及肾上腺素或原儿茶酸作为受体一起温育,得到相应的甲基化儿茶酚。将这些儿茶酚进行降解,通过一系列立体化学明确的反应将甲氧基转化为乙酸酯的甲基,然后分析其构型。结果表明,甲基从AdoMet转移到任一受体的过程是以翻转模式发生的。因此,儿茶酚O-甲基转移酶反应涉及在SN2过程中甲基从AdoMet的硫直接转移到儿茶酚的氧,而没有甲基化的酶中间体。