Saunders M P, Jaffar M, Patterson A V, Nolan J, Naylor M A, Phillips R M, Harris A L, Stratford I J
School of Pharmacy, University of Manchester, Manchester, UK.
Biochem Pharmacol. 2000 Apr 15;59(8):993-6. doi: 10.1016/s0006-2952(99)00405-0.
Analogues of EO9 (3-hydroxymethyl-5-aziridinyl-1-methyl-2[1H-indole-4-7-dione]prop-2-e n-1-ol) which lack functionality at either the C-2 or C-3 position were synthesised. The aim was to establish the importance of each group towards toxicity and to give an indication as to whether substitution at either position altered activation and toxicity after metabolism by cellular NADPH: cytochrome c (P450) reductase (P450R). MDA231 breast cancer cells were transfected with the cDNA for human P450R and stable clones were isolated. These high P450R-expressing clones were used to determine the aerobic and hypoxic toxicity of EO9 and the two analogues that lacked functionality at either C-2 or C-3. The results showed that P450R was strongly implicated in the bioactivation of EO9 and its analogues under both of these conditions. This data also showed that the C-3 functionality was primarily implicated in hypoxic toxicity.
合成了在C-2或C-3位缺乏官能团的EO9(3-羟甲基-5-氮丙啶基-1-甲基-2[1H-吲哚-4,7-二酮]丙-2-烯-1-醇)类似物。目的是确定每个基团对毒性的重要性,并指出在任一位置进行取代是否会改变细胞NADPH:细胞色素c(P450)还原酶(P450R)代谢后的活化和毒性。用人类P450R的cDNA转染MDA231乳腺癌细胞,并分离出稳定克隆。这些高表达P450R的克隆用于测定EO9以及在C-2或C-3位缺乏官能团的两种类似物的需氧和缺氧毒性。结果表明,在这两种条件下,P450R都与EO9及其类似物的生物活化密切相关。该数据还表明,C-3官能团主要与缺氧毒性有关。