Nair M G, Nanavati N T, Nair I G, Kisliuk R L, Gaumont Y, Hsiao M C, Kalman T I
J Med Chem. 1986 Sep;29(9):1754-60. doi: 10.1021/jm00159a032.
The poly-gamma-glutamyl derivatives of n10-propargyl-5,8-dideazafolic acid (PDDF) with a chain length of up to five glutamate residues were synthesized from N10-propargyl-5,8-dideazapteroic acid by the solid-phase procedure. These compounds were evaluated for their antifolate activity using folate-requiring microorganisms and intact and permeabilized L1210 cells and as inhibitors of dihydrofolate reductase and thymidylate synthase derived from L. casei. The polyglutamylated derivatives of PDDF (1) were more active than the parent compound in inhibiting the growth of L. casei, thymidylate synthesis in permeabilized L1210 cells, and L. casei thymidylate synthase. Two analogues of 5,8-dideazafolic acid (2 and 3), one with a 2-butyne and another with a cyclopropylmethyl substituent at N10, were also synthesized and evaluated for their antifolate activities using the above-mentioned test systems. They were considerably less active than PDDF or its polyglutamylated derivatives. N10-Propargyl-5,8-dideazapteroyl tri-, tetra-, and pentaglutamates were equipotent with 5-fluorodeoxyuridylate as inhibitors of thymidylate synthesis in permeabilized L1210 cells. The polyglutamyl metabolites of PDDF were shown to be the most potent antifolate inhibitors of L. casei and L1210 thymidylate synthases yet described.
通过固相法由N10-炔丙基-5,8-二去氮蝶酸合成了链长高达五个谷氨酸残基的N10-炔丙基-5,8-二去氮叶酸(PDDF)的聚γ-谷氨酰衍生物。使用需要叶酸的微生物以及完整的和透化的L1210细胞,并作为干酪乳杆菌来源的二氢叶酸还原酶和胸苷酸合酶的抑制剂,对这些化合物的抗叶酸活性进行了评估。PDDF(1)的聚谷氨酰化衍生物在抑制干酪乳杆菌生长、透化的L1210细胞中的胸苷酸合成以及干酪乳杆菌胸苷酸合酶方面比母体化合物更具活性。还合成了5,8-二去氮叶酸的两种类似物(2和3),一种在N10处带有2-丁炔,另一种带有环丙基甲基取代基,并使用上述测试系统评估了它们的抗叶酸活性。它们的活性明显低于PDDF或其聚谷氨酰化衍生物。N10-炔丙基-5,8-二去氮蝶酰三、四和五谷氨酸酯作为透化的L1210细胞中胸苷酸合成的抑制剂与5-氟脱氧尿苷酸等效。PDDF的聚谷氨酰代谢物被证明是迄今所描述的干酪乳杆菌和L1210胸苷酸合酶最有效的抗叶酸抑制剂。