Corbett A H, Zechiedrich E L, Osheroff N
Department of Biochemistry, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-0146.
J Biol Chem. 1992 Jan 15;267(2):683-6.
Eukaryotic topoisomerase II is capable of binding two separate nucleic acid helices prior to its DNA cleavage and strand passage events (Zechiedrich, E. L., and Osheroff, N (1990) EMBO J. 9, 4555-4562). Presumably, one of these helices represents the helix that the enzyme cleaves (i.e. cleavage helix), and the other represents the helix that it passes (i.e. passage helix) through the break in the nucleic acid backbone. To determine whether the passage helix is required for reaction steps that precede the enzyme's DNA strand passage event, interactions between Drosophila melanogaster topoisomerase II and a short double-stranded oligonucleotide were assessed. These studies employed a 40-mer that contained a specific recognition/cleavage site for the enzyme. The sigmoidal DNA concentration dependence that was observed for cleavage of the 40-mer indicated that topoisomerase II had to interact with more than a single oligonucleotide in order for cleavage to take place. Despite this requirement, results of enzyme DNA binding experiments indicated no binding cooperativity for the 40-mer. These findings strongly suggest a two-site model for topoisomerase II action in which the passage and the cleavage helices bind to the enzyme independently, but the passage helix must be present for efficient topoisomerase II-mediated DNA cleavage to occur.
真核生物拓扑异构酶II在其DNA切割和链通过事件之前能够结合两条独立的核酸螺旋(Zechiedrich, E. L., and Osheroff, N (1990) EMBO J. 9, 4555 - 4562)。据推测,其中一条螺旋代表酶切割的螺旋(即切割螺旋),另一条代表它通过核酸主链断裂处的螺旋(即通过螺旋)。为了确定在酶的DNA链通过事件之前的反应步骤是否需要通过螺旋,评估了果蝇拓扑异构酶II与短双链寡核苷酸之间的相互作用。这些研究使用了一个40聚体,其包含该酶的一个特异性识别/切割位点。观察到的40聚体切割的S形DNA浓度依赖性表明,拓扑异构酶II必须与不止一个寡核苷酸相互作用才能发生切割。尽管有此要求,但酶DNA结合实验结果表明40聚体不存在结合协同性。这些发现强烈提示了拓扑异构酶II作用的双位点模型,其中通过螺旋和切割螺旋独立地与酶结合,但必须存在通过螺旋才能发生有效的拓扑异构酶II介导的DNA切割。