Hart B P, Haile W H, Licato N J, Bolanowska W E, McGuire J J, Coward J K
Department of Chemistry, University of Michigan, Ann Arbor 48109-1055, USA.
J Med Chem. 1996 Jan 5;39(1):56-65. doi: 10.1021/jm950515e.
The stereospecific syntheses of L-threo-gamma-fluoromethotrexate (1t) and L-threo-gamma-fluorofolic acid (3t) are reported. Compounds 1t and 3t have no substrate activity with folylpoly-gamma-glutamate synthetase isolated from CCRF-CEM human leukemia cells, and compound 1t inhibits human dihydrofolate reductase at similar levels as methotrexate. The synthesis of DL-3,3-difluoroglutamic acid (6) and its incorporation into DL-beta,beta-difluorofolic acid (4) are also reported. Compound 4 acts as a better substrate for human CCRF-CEM folylpoly-gamma-glutamate synthetase than folic acid (V/K = ca. 7-fold greater). Thus, replacement of the glutamate moiety of methotrexate and folic acid with 4-fluoroglutamic acid and 3,3-difluoroglutamic acid results in folates and antifolates with altered polyglutamylation activity.
报道了L-苏型-γ-氟甲氨蝶呤(1t)和L-苏型-γ-氟叶酸(3t)的立体定向合成。化合物1t和3t对从CCRF-CEM人白血病细胞中分离出的叶酰聚-γ-谷氨酸合成酶没有底物活性,并且化合物1t抑制人二氢叶酸还原酶的水平与甲氨蝶呤相似。还报道了DL-3,3-二氟谷氨酸(6)的合成及其掺入DL-β,β-二氟叶酸(4)。化合物4作为人CCRF-CEM叶酰聚-γ-谷氨酸合成酶的底物比叶酸更好(V/K约大7倍)。因此,用4-氟谷氨酸和3,3-二氟谷氨酸取代甲氨蝶呤和叶酸的谷氨酸部分会导致具有改变的多聚谷氨酸化活性的叶酸和抗叶酸剂。