McGuire J J, Coward J K
J Biol Chem. 1985 Jun 10;260(11):6747-54.
The effects of 4-fluoroglutamate on the reaction catalyzed by partially purified rat liver folylpolyglutamate synthetase have been investigated. DL-threo-4-Fluoroglutamate was an effective, concentration-dependent inhibitor of polyglutamylation of both tetrahydrofolate and methotrexate, while the erythro isomer was weakly inhibitory. 4-Fluoroglutamate acted as an alternate substrate; the DL-threo isomer was incorporated only slightly less effectively than L-glutamate, while the erythro isomer was poorly incorporated. The resulting product, a pteroylglutamyl-gamma-(4-fluoro)glutamate, was a very poor substrate for further glutamylation. Thus, when tetrahydrofolate and 4-fluoroglutamate were substrates, the sole Zn/HCl cleavage product co-chromatographed on high performance liquid chromatography with chemically synthesized p-aminobenzoylglutamyl-gamma-(4-fluoro)glutamate. When [3H]methotrexate (4-NH2-10-CH3PteGlu) and 4-fluoroglutamate were the substrates, one product was obtained which co-chromatographed on high performance liquid chromatography with chemically synthesized 4-NH2-CH3PteGlu-gamma-(4-fluoro)glutamate. Further evidence that the product from [3H]methotrexate was a dipeptide came from gamma-glutamyl hydrolase digestion experiments and quantitative amino acid analysis. The appearance of trace amounts of a product having properties consistent with the addition of a second 4-fluoroglutamate occurred only under forcing conditions. The chemically and enzymatically synthesized fluoroglutamate-containing products were at least 15 times poorer than the analogous diglutamyl compound as substrates for rat liver folylpolyglutamate synthetase. These results are consistent with inhibition of polyglutamate synthesis by 4-fluoroglutamate through a "leaky" chain termination mechanism.
已对4-氟谷氨酸对部分纯化的大鼠肝脏叶酰聚谷氨酸合成酶催化反应的影响进行了研究。DL-苏型-4-氟谷氨酸是四氢叶酸和甲氨蝶呤聚谷氨酸化的有效、浓度依赖性抑制剂,而赤型异构体的抑制作用较弱。4-氟谷氨酸作为替代底物;DL-苏型异构体的掺入效率仅略低于L-谷氨酸,而赤型异构体的掺入效果较差。所得产物,即蝶酰谷氨酰-γ-(4-氟)谷氨酸,是进一步进行谷氨酰化的非常差的底物。因此,当四氢叶酸和4-氟谷氨酸为底物时,唯一的锌/盐酸裂解产物在高效液相色谱上与化学合成的对氨基苯甲酰谷氨酰-γ-(4-氟)谷氨酸共色谱。当[3H]甲氨蝶呤(4-NH2-10-CH3PteGlu)和4-氟谷氨酸为底物时,得到一种产物,其在高效液相色谱上与化学合成的4-NH2-CH3PteGlu-γ-(4-氟)谷氨酸共色谱。来自[3H]甲氨蝶呤的产物是二肽的进一步证据来自γ-谷氨酰水解酶消化实验和定量氨基酸分析。仅在强制条件下才出现痕量具有与添加第二个4-氟谷氨酸一致性质的产物。化学合成和酶促合成的含氟谷氨酸产物作为大鼠肝脏叶酰聚谷氨酸合成酶的底物比类似的二谷氨酰化合物差至少15倍。这些结果与4-氟谷氨酸通过“渗漏”链终止机制抑制聚谷氨酸合成一致。