Thiyagarajan M M, Waldman S A, Noè M, Kmiec E B
Department of Pharmacology, Kimmel Cancer Center, Thomas Jefferson University, Philadelphia, USA.
Eur J Biochem. 1998 Jul 15;255(2):347-55. doi: 10.1046/j.1432-1327.1998.2550347.x.
The binding affinity of purified native Ustilago maydis topoisomerase I enzyme for radiolabeled DNA substrates with various secondary structures was determined by gel shift and equilibrium binding analysis. Topoisomerase I exhibited cooperativity in binding to DNA regardless of the substrate structure. Further analysis demonstrated that cruciform DNA has two populations of binding sites for topoisomerase I while the other substrates (single-stranded DNA, DNA molecules containing six or one mismatched base pairs, hairpin, and fully homologous duplex DNA) have a single population of binding sites. The affinity of topoisomerase I for cruciform was found to be an order of magnitude higher affinity than for any of the other substrates. The high affinity of topoisomerase I for cruciform and specificity of topoisomerase I-cruciform structure interaction were confirmed by competition experiments. These studies demonstrate the high affinity of topoisomerase I for cruciform structure.
通过凝胶迁移和平衡结合分析,测定了纯化的天然玉米黑粉菌拓扑异构酶I酶对具有各种二级结构的放射性标记DNA底物的结合亲和力。无论底物结构如何,拓扑异构酶I在与DNA结合时均表现出协同性。进一步分析表明,十字形DNA对拓扑异构酶I有两类结合位点,而其他底物(单链DNA、含有六个或一个错配碱基对的DNA分子、发夹结构和完全同源的双链DNA)只有一类结合位点。发现拓扑异构酶I对十字形DNA的亲和力比对任何其他底物的亲和力高一个数量级。竞争实验证实了拓扑异构酶I对十字形DNA的高亲和力以及拓扑异构酶I与十字形结构相互作用的特异性。这些研究证明了拓扑异构酶I对十字形结构具有高亲和力。