Tsyrlov I B, Duzhak T G, Liakhovich V V
Nauchnye Doki Vyss Shkoly Biol Nauki. 1987(3):30-6.
The kinetic parameters of binding and hydroxylation of hydrophobic substrate 3,4-benzpyrene have been studied in liver microsomes of untreated and 3-methylcholanthrene treated mice. The reaction of benzpyrene-hydroxylase has been established to be described by hyperbolic curve, which characterizes the dependence of [ES] and d(P)/dt on [E0] for reactions in biphasic system. A key role of microsomal membraneous phospholipids has been revealed in competitive inhibition of 3,4-benzpyrene hydroxylation. For the adequate application of Michaelis--Menten theory for benzpyrene-hydroxylation reaction a modified method of 3,4-benzpyrene-hydroxylation in the samples with low content of protein in microsomal fraction is suggested.
在未经处理和经3-甲基胆蒽处理的小鼠肝脏微粒体中,研究了疏水性底物3,4-苯并芘的结合和羟基化动力学参数。已确定苯并芘羟化酶的反应可用双曲线描述,该双曲线表征了双相体系中反应的[ES]和d(P)/dt对[E0]的依赖性。已揭示微粒体膜磷脂在3,4-苯并芘羟基化的竞争性抑制中起关键作用。为了将米氏理论适当地应用于苯并芘羟化反应,建议在微粒体部分蛋白质含量低的样品中采用改进的3,4-苯并芘羟化方法。