Caserta M, Amadei A, Camilloni G, Di Mauro E
Centro Studi Acidi Nucleici (CNR), Rome, Italy.
Biochemistry. 1990 Sep 4;29(35):8152-7. doi: 10.1021/bi00487a024.
It was previously observed that two steps of the reaction of eukaryotic DNA topoisomerase I (topoisomerization and cleavage) depend upon the conformation of the DNA substrate: in both instances the supercoiled form is a more efficient substrate than the relaxed one. This paper reports the analysis of two other steps of the reaction: the binding of DNA topoisomerase I to DNA and the catalytic constants (Kcs) of topoisomerization as a function of the topology of the substrate. Binding. Competition assays show that supercoiled DNA binds the enzyme with even slower kinetics than the relaxed form. Therefore, the preferential topoisomerization of supercoiled DNA is not due to the binding step. Additional evidence that the rate-limiting step of the topoisomerization reaction is not the binding of the enzyme to DNA is provided by the fact that the kinetics of relaxation is first order. Catalysis. The Kcs of the topoisomerization reaction have been calculated and it was shown that they do not vary as a function of the topology of the substrate or of its size. Taken together, the data on binding, cleavage, topoisomerization, and Kcs suggest that the preferential topoisomerization of torsionally strained DNA is due to the higher availability, on this topological form, of DNA sites that allow the onset of the reaction.
先前观察到,真核生物DNA拓扑异构酶I反应的两个步骤(拓扑异构化和切割)取决于DNA底物的构象:在这两种情况下,超螺旋形式都是比松弛形式更有效的底物。本文报道了对该反应另外两个步骤的分析:DNA拓扑异构酶I与DNA的结合以及作为底物拓扑结构函数的拓扑异构化催化常数(Kcs)。结合。竞争试验表明,超螺旋DNA与酶结合的动力学甚至比松弛形式还要慢。因此,超螺旋DNA的优先拓扑异构化并非由于结合步骤。松弛动力学为一级动力学这一事实提供了额外证据,表明拓扑异构化反应的限速步骤不是酶与DNA的结合。催化。已计算出拓扑异构化反应的Kcs,结果表明它们不会随底物的拓扑结构或大小而变化。综合来看,关于结合、切割、拓扑异构化和Kcs的数据表明,扭转应变DNA的优先拓扑异构化是由于在这种拓扑形式下,允许反应起始的DNA位点具有更高的可及性。