Kohan M J, Sangaiah R, Ball L M, Gold A
Mutat Res. 1985 Mar;155(3):95-8. doi: 10.1016/0165-1218(85)90124-7.
Aceanthrylene, a non-alternant cyclopenta-fused hydrocarbon, was shown to be weakly mutagenic without S9 and strongly mutagenic with S9 in the Ames Salmonella plate incorporation assay. The compound was most active in strain TA100 (35 revertants/nmole in the presence of 0.3 mg of S9 protein), and less active in strains TA98, TA1537 and TA1538 (20, 10 and 3.1 rev/nmole respectively, + S9). Strain TA1535 was unresponsive, suggesting that this compound induces frameshift mutations rather than base-pair substitutions. The mutagenic potency of aceanthrylene is consistent with predictions of its activity based on the relatively large delocalization energy (delta E deloc/beta = 0.931) of the carbonium ion which would result from oxirane ring opening of the 1,2-epoxide, a potential active metabolite.
苊烯,一种非交替的环戊稠合烃,在艾姆斯沙门氏菌平板掺入试验中,显示出在无S9时具有弱致突变性,而在有S9时具有强致突变性。该化合物在TA100菌株中活性最高(在存在0.3mg S9蛋白的情况下为35个回复突变体/纳摩尔),在TA98、TA1537和TA1538菌株中活性较低(分别为20、10和3.1个回复突变体/纳摩尔,+S9)。TA1535菌株无反应,表明该化合物诱导移码突变而非碱基对替换。苊烯的致突变效力与其基于碳正离子相对较大的离域能(δE离域/β=0.931)的活性预测一致,该碳正离子由潜在活性代谢物1,2-环氧化物的环氧乙烷环开环产生。