Floyd R A, Soong L M
Biochim Biophys Acta. 1977 Jun 23;498(1):244-9. doi: 10.1016/0304-4165(77)90104-0.
We have demonstrated that the nitroxyl free radical form of the carcinogen N-hydroxy-2-acetylaminofluorene (OH-AAF) is an obligatory intermediate in the cumene hydroperoxide-hematin-induced oxidative activation of this carcinogen into 2-nitrosofluorene and N-acetoxy-2-acetylaminofluorene. Both the rate of N-OH-acetylaminofluorene oxidation and the amount of its nitroxyl free radical were experimentally observed as a function of reaction time. Rate equations were derived for a model in which the nitroxyl free radical form of OH-AAF was an obligatory intermediate in the reaction. Using this theory it was possible to compute one experimental variable, the rate of OH-AAF oxidation, utilizing the other experimental variable, the amount of nitroxyl free radical present at any time during the reaction. The theory also predicts a linear relationship between the rate of OH-AAF oxidation and the square of the free radical content; and this was found to be true experimentally. The dismutation rate constant of the nitroxyl free radical of OH-AAF was found to be 2.7-10(5) M-1-s-1.
我们已经证明,致癌物N-羟基-2-乙酰氨基芴(OH-AAF)的硝酰基自由基形式是氢过氧化异丙苯-血红素诱导该致癌物氧化活化为2-亚硝基芴和N-乙酰氧基-2-乙酰氨基芴过程中的一个必需中间体。实验观察了N-OH-乙酰氨基芴的氧化速率及其硝酰基自由基的量随反应时间的变化。推导了一个模型的速率方程,其中OH-AAF的硝酰基自由基形式是反应中的一个必需中间体。利用该理论,可以利用另一个实验变量,即反应过程中任何时刻存在的硝酰基自由基的量,来计算一个实验变量,即OH-AAF的氧化速率。该理论还预测OH-AAF的氧化速率与自由基含量的平方之间存在线性关系;实验发现这是正确的。发现OH-AAF的硝酰基自由基的歧化速率常数为2.7×10⁵ M⁻¹·s⁻¹。