Maine I P, Sun D, Hurley L H, Kodadek T
Department of Chemistry and Biochemistry, Clayton Foundation, College of Pharmacy, University of Texas, Austin 78712-1096.
Biochemistry. 1992 Apr 28;31(16):3968-75. doi: 10.1021/bi00131a012.
The antitumor drug CC-1065 is thought to exert its effects by covalent bonding to N3 of adenine in DNA and interfering with some aspect of DNA metabolism. Therefore, it is of interest to determine what effect this drug has on enzymes involved in various aspects of DNA metabolism. In this report, we examine the ability of two DNA helicases, the dda protein of phage T4 and helicase II of Escherichia coli, to unwind CC-1065-adducted, tailed, oligonucleotides. It is shown that the presence of the drug on DNA strongly inhibits unwinding catalyzed by the T4 and E. coli proteins. A significant difference between the results obtained with the two helicases is that DNAs containing drug on either the tailed or the completely duplex strands are poor substrates for helicase II but dda protein-mediated unwinding is inhibited only when the drug is on the tailed strand. The drug-modified, helicase-released, strands migrate abnormally through a native gel, suggesting that the drug traps an unusual secondary structure generated in the course of protein-mediated unwinding. A kinetic analysis of the drug-inhibited reactions reveals that the helicases are trapped by the DNA-drug complex. This is evidenced by a decrease in the rate of helicase exchange between drug-bound substrate and drug-free duplex. The implications of these results with respect to the mechanism of action of CC-1065 in vivo are discussed.
抗肿瘤药物CC - 1065被认为是通过与DNA中腺嘌呤的N3共价结合并干扰DNA代谢的某些方面来发挥作用的。因此,确定这种药物对参与DNA代谢各个方面的酶有何影响是很有意义的。在本报告中,我们研究了两种DNA解旋酶,即噬菌体T4的dda蛋白和大肠杆菌的解旋酶II,解开CC - 1065加合物化的带尾寡核苷酸的能力。结果表明,DNA上药物的存在强烈抑制了T4蛋白和大肠杆菌蛋白催化的解旋作用。两种解旋酶所得结果的一个显著差异是,无论是带尾链还是完全双链上含有药物的DNA都是解旋酶II的不良底物,但只有当药物位于带尾链上时,dda蛋白介导的解旋才会受到抑制。药物修饰的、解旋酶释放的链在天然凝胶中迁移异常,这表明药物捕获了在蛋白质介导的解旋过程中产生的异常二级结构。对药物抑制反应的动力学分析表明,解旋酶被DNA - 药物复合物捕获。这通过药物结合底物和无药物双链之间解旋酶交换速率的降低得到证明。讨论了这些结果对CC - 1065体内作用机制的意义。