Dolan M E, Scicchitano D, Pegg A E
Department of Physiology, Milton S. Hershey Medical Center, Pennsylvania State University College of Medicine, Hershey 17033.
Cancer Res. 1988 Mar 1;48(5):1184-8.
A sensitive assay procedure was developed for the measurement of the activity of mammalian O6-alkylguanine-DNA-alkyltransferase. The procedure utilized oligodeoxynucleotides containing O6-methylguanine as substrates for the reaction. The oligodeoxynucleotides were end labeled with 32P by the reaction with polynucleotide kinase and [gamma-32P]ATP and allowed to react with organ or cell extracts containing the alkyltransferase. The unmethylated product which was formed was separated from the substrate by reverse-phase high-pressure liquid chromatography. Since the repair by the alkyltransferase is bimolecular, the second order rate constants for the reaction between the labeled oligomer and repair protein from several different sources were determined. The amount of alkyltransferase present was then calculated from the amount of product formed and the appropriate second order rate constant for the reaction. Excellent agreement was obtained between the alkyltransferase levels determined in this procedure and those measured by conventional assay procedures in a variety of cell lines having both high and low activity. The method also gave results in good agreement with other assay procedures for a number of rat tissues, although a few tissues gave anomalous results owing to a high level of nuclease activity which degraded the substrate. This method should prove useful for the measurement of alkyltransferase activity in samples in which the activity is very low or the amount of material available is limited.
已开发出一种灵敏的检测方法来测定哺乳动物O6-烷基鸟嘌呤-DNA烷基转移酶的活性。该方法利用含有O6-甲基鸟嘌呤的寡脱氧核苷酸作为反应底物。寡脱氧核苷酸通过与多核苷酸激酶和[γ-32P]ATP反应进行32P末端标记,并使其与含有烷基转移酶的器官或细胞提取物反应。通过反相高压液相色谱将形成的未甲基化产物与底物分离。由于烷基转移酶的修复是双分子反应,因此测定了来自几种不同来源的标记寡聚物与修复蛋白之间反应的二级速率常数。然后根据形成的产物量和反应的适当二级速率常数计算出存在的烷基转移酶量。在本方法测定的烷基转移酶水平与通过常规检测方法在具有高活性和低活性的多种细胞系中测得的水平之间,获得了极好的一致性。对于许多大鼠组织,该方法给出的结果也与其他检测方法高度一致,尽管由于核酸酶活性高导致底物降解,少数组织给出了异常结果。该方法对于测定活性非常低或可用材料量有限的样品中的烷基转移酶活性应该是有用的。