McGuire J J, Hart B P, Haile W H, Magee K J, Rhee M, Bolanowska W E, Russell C, Galivan J, Paul B, Coward J K
Grace Cancer Drug Center, Roswell Park Cancer Institute, Buffalo, NY 14263, USA.
Biochem Pharmacol. 1996 Oct 25;52(8):1295-303. doi: 10.1016/0006-2952(96)00485-6.
Fluoroglutamate-containing analogs of folates and methotrexate (MTX) with altered capacities for poly (gamma-glutamate) metabolism were synthesized to probe the biological roles of polyglutamates. Compared to folic acid, DL-e,t-gamma-fluorofolic acid, a compound that is a poor substrate for polyglutamylation, was approximately 25-fold less potent in promoting growth of folate-depleted H35 rat hepatoma cells. DL-beta,beta-Difluorofolic acid, a compound that forms diglutamates more readily than does folic acid, was at least equivalent to folic acid in potency. Leucovorin (LV), a reduced folate, was 30-fold more potent than folic acid in promoting growth, whereas the analogous form of DL-e,t-gamma-fluorofolate, DL-e,t-gamma-fluoroleucovorin (DL-e,t-gamma-FLV) was only 4-fold more potent than folic acid. Both LV and DL-e,t-gamma-FLV protected or "rescued" cells from the growth inhibitory effects of MTX; however a 37- to 46-fold higher concentration of the fluoro analog was required. Folic acid, DL-e,t-gamma-fluorofolic acid, LV, and DL-e,t-gamma-FLV each potentiated the growth inhibitory effect of 5-fluoro-2'-deoxyuridine on CCRF-CEM human leukemia cells; higher concentrations of fluorinated analogs again were required. Stereochemically pure L-t-gamma-fluoromethotrexate (L-t-gamma-FMTX), a poor substrate for polyglutamylation, was evaluated as a cell growth inhibitor. In continuous exposure, L-t-gamma-FMTX), was 7-fold less potent than MTX as an inhibitor of CCRF-CEM growth. Results with these fluorinated folate and MTX analogs offer insight into the importance of polyglutamate metabolism to these biological and pharmacological effects.
合成了具有改变的聚(γ-谷氨酸)代谢能力的含氟谷氨酸叶酸类似物和甲氨蝶呤(MTX),以探究聚谷氨酸的生物学作用。与叶酸相比,DL-e,t-γ-氟叶酸是一种聚谷氨酸化不良底物,在促进叶酸缺乏的H35大鼠肝癌细胞生长方面的效力约低25倍。DL-β,β-二氟叶酸比叶酸更容易形成二谷氨酸,其效力至少与叶酸相当。亚叶酸(LV)作为一种还原型叶酸,在促进生长方面比叶酸强30倍,而DL-e,t-γ-氟叶酸的类似物DL-e,t-γ-氟亚叶酸(DL-e,t-γ-FLV)仅比叶酸强4倍。LV和DL-e,t-γ-FLV都能保护细胞或使其从MTX的生长抑制作用中“解救”出来;然而,氟类似物所需的浓度要高37至46倍。叶酸、DL-e,t-γ-氟叶酸、LV和DL-e,t-γ-FLV均增强了5-氟-2'-脱氧尿苷对CCRF-CEM人白血病细胞的生长抑制作用;同样需要更高浓度的氟化类似物。立体化学纯的L-t-γ-氟甲氨蝶呤(L-t-γ-FMTX)是一种聚谷氨酸化不良底物,被评估为一种细胞生长抑制剂。在持续暴露中,L-t-γ-FMTX作为CCRF-CEM生长抑制剂的效力比MTX低7倍。这些氟化叶酸和MTX类似物的结果有助于深入了解聚谷氨酸代谢对这些生物学和药理学效应的重要性。