Thornton T J, Jones T R, Jackman A L, Flinn A, O'Connor B M, Warner P, Calvert A H
Drug Development Section, Institute of Cancer Research, Sutton, Surrey, England.
J Med Chem. 1991 Mar;34(3):978-84. doi: 10.1021/jm00107a015.
We report the synthesis of four new 4-thio-5,8-dideazafolic acid analogues and a 4-(methylthio) analogue structurally related to the thymidylate synthase (TS) inhibitor N10-propargyl-5,8-dideazafolic acid. Three N10-propargyl-4-thio-5,8-dideazafolic acid analogues had C2 amino, hydrogen, and methyl substituents. A 4-thio and a 4-(methylthio) compound each with hydrogen at C2 and ethyl at N10 were also synthesized. In general, the synthetic route involved thionation of the appropriate 4-oxoquinazoline; the sulfur thus introduced was then protected by methylation. Further protection with a pivaloyl group was required for the quinazoline bearing a 2-amino substituent. The protected quinazolines were treated with N-bromosuccinimide and the resulting 6-(bromomethyl) compounds were then coupled to the appropriate N-monoalkylated diethyl N-(4-aminobenzoyl)-L-glutamate in N,N-dimethylacetamide with calcium carbonate as base. The 4-thio-5,8-dideazafolic acids were obtained by removal of the methylthio group with sodium hydrosulfide, followed by deprotection of the carboxyl groups with cold dilute alkali. For the compound containing a pivaloyl protecting group, hot dilute alkali was used. To obtain the 5,8-dideazafolic acid containing a 4-(methylthio) substituent, the corresponding diester was treated with lithium hydroxide which selectively deprotected the carboxyl groups. The five compounds were tested as inhibitors of L1210 TS. It was found that replacement of the 4-oxygen of the quinazoline moiety by sulfur did not alter the TS inhibition. However, the introduction of a methylthio substituent at position 4 severely impaired TS inhibition. All 4-thio compounds were less cytotoxic to L1210 cells in culture than their 4-oxo counterparts.
我们报道了四种新的4-硫代-5,8-二氮杂叶酸类似物以及一种与胸苷酸合成酶(TS)抑制剂N10-炔丙基-5,8-二氮杂叶酸结构相关的4-(甲硫基)类似物的合成。三种N10-炔丙基-4-硫代-5,8-二氮杂叶酸类似物在C2位分别有氨基、氢和甲基取代基。还合成了一种在C2位为氢且在N10位为乙基的4-硫代和一种4-(甲硫基)化合物。一般来说,合成路线包括对适当的4-氧代喹唑啉进行硫代;由此引入的硫随后通过甲基化进行保护。对于带有2-氨基取代基的喹唑啉,需要用新戊酰基进一步保护。将受保护的喹唑啉用N-溴代琥珀酰亚胺处理,然后将得到的6-(溴甲基)化合物在N,N-二甲基乙酰胺中以碳酸钙为碱与适当的N-单烷基化二乙基N-(4-氨基苯甲酰基)-L-谷氨酸偶联。通过用硫化氢钠除去甲硫基,然后用冷稀碱脱保护羧基来获得4-硫代-5,8-二氮杂叶酸。对于含有新戊酰基保护基团的化合物,则使用热稀碱。为了获得含有4-(甲硫基)取代基的5,8-二氮杂叶酸,将相应的二酯用氢氧化锂处理,后者选择性地脱保护羧基。对这五种化合物作为L1210 TS抑制剂进行了测试。发现用硫取代喹唑啉部分的4-氧原子不会改变对TS的抑制作用。然而,在4位引入甲硫基取代基严重损害了对TS的抑制作用。所有4-硫代化合物在培养中对L1210细胞的细胞毒性均低于其4-氧代对应物。