DeGraw J I, Christie P H, Kisliuk R L, Gaumont Y, Sirotnak F M
Bio-Organic Chemistry Laboratory, SRI International, Menlo Park, California 94025.
J Med Chem. 1990 Jan;33(1):212-5. doi: 10.1021/jm00163a035.
Reformatski condensation of benzyl 2-bromopropionate with 4-carbomethoxybenzaldehyde, followed by dehydration afforded benzyl 2-methyl-p-carbomethoxycinnamate (4a). Hydrogenation over a Pd catalyst gave the hydrocinnamic acid 5a. Conversion to the chloromethyl (6a) and azidomethyl ketone (7a) was followed by hydrogenation to the aminomethyl ketone (8a). Direct N-alkylation by 2,4-diamino-5-nitro-6-chloropyrimidine followed by reductive ring closure in Zn-HOAc and subsequent saponification of the benzoate ester yielded 4-amino-4-deoxy-9-methyl-10-deazapteroic acid (11a). Coupling with diethyl L-glutamate and saponification afforded 9-methyl-10-deazaminopterin (13a). The 9-ethyl analogue (13b) was similarly prepared from benzyl 2-bromobutyrate. The 9-methyl analogue (13a) was 21 times more potent than MTX as an inhibitor of cell growth in L1210 cells. The reason for this enhanced cytotoxicity in L1210 is unclear, since enzyme inhibition and transport parameters were similar to those of MTX. In human Manca leukemia cells growth inhibition was not dramatic and paralleled MTX.
2-溴丙酸苄酯与4-甲氧基羰基苯甲醛进行Reformatski缩合反应,随后脱水得到2-甲基-对甲氧基羰基肉桂酸苄酯(4a)。在钯催化剂上进行氢化反应得到氢化肉桂酸5a。将其转化为氯甲基(6a)和叠氮甲基酮(7a),然后氢化得到氨基甲基酮(8a)。通过2,4-二氨基-5-硝基-6-氯嘧啶直接进行N-烷基化反应,随后在Zn-HOAc中进行还原闭环反应,接着对苯甲酸酯进行皂化反应,得到4-氨基-4-脱氧-9-甲基-10-脱氮蝶酸(11a)。与L-谷氨酸二乙酯偶联并皂化得到9-甲基-10-脱氮氨基蝶呤(13a)。9-乙基类似物(13b)由2-溴丁酸苄酯类似制备得到。9-甲基类似物(13a)作为L1210细胞中细胞生长抑制剂的效力比甲氨蝶呤高21倍。L1210中这种增强的细胞毒性的原因尚不清楚,因为酶抑制和转运参数与甲氨蝶呤相似。在人曼卡白血病细胞中,生长抑制并不显著,且与甲氨蝶呤相似。