首页> 外文期刊>Journal of Molecular Biology >Action at hooked or twisted-hooked DNA juxtapositions rationalizes unlinking preference of type-2 topoisomerases.
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Action at hooked or twisted-hooked DNA juxtapositions rationalizes unlinking preference of type-2 topoisomerases.

机译:对钩状或扭曲钩状DNA并置的作用使2型拓扑异构酶的解链偏好合理化。

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The mathematical basis of the hypothesis that type-2 topoisomerases recognize and act at specific DNA juxtapositions has been investigated by coarse-grained lattice polymer models, showing that selective segment passages at hooked juxtapositions can result in dramatic reductions in catenane and knot populations. The lattice modeling approach is here extended to account for the narrowing of variance of linking number (Lk) of DNA circles by type-2 topoisomerases. In general, the steady-state variance of Lk resulting from selective segment passages at a specific juxtaposition geometry j is inversely proportional to the average linking number, Lk(j), of circles with the given juxtaposition. Based on this formulation, we demonstrate that selective segment passages at hooked juxtapositions reduce the variance of Lk. The dependence of this effect on model DNA circle size is remarkably similar to that observed experimentally for type-2 topoisomerases, which appear to be less capable in narrowing Lk variance for small DNA circles than for larger DNA circles. This behavior is rationalized by a substantial cancellation of writhe in small circles with hook-like juxtapositions. During our simulations, we uncovered a twisted variation of the hooked juxtaposition that has an even more dramatic effect on Lk variance narrowing than the hooked juxtaposition. For an extended set of juxtapositions, we detected a significant correlation between the Lk narrowing potential and the logarithmic decatenating and unknotting potentials for a given juxtaposition, a trend reminiscent of scaling relations observed with experimental measurements on type-2 topoisomerases from a variety of organisms. The consistent agreement between theory and experiment argues for type-2 topoisomerase action at hooked or twisted-hooked DNA juxtapositions.
机译:粗粒晶格聚合物模型已经研究了2型拓扑异构酶识别并作用于特定DNA并列的假说的数学基础,表明钩状并列处的选择性片段通过可能导致链烷和结群的急剧减少。在此扩展了晶格建模方法,以解决2型拓扑异构酶对DNA圆的连接数(Lk)方差的缩小。通常,在特定的并列几何形状j处由选择性段通过产生的Lk的稳态变化与给定并列的圆的平均链接数Lk(j)成反比。基于此公式,我们证明了在钩形并列处的选择性段通道减少了Lk的变化。这种作用对模型DNA圆大小的依赖性与实验观察到的2型拓扑异构酶的依赖性非常相似,对于大的DNA圆,这种2型拓扑异构酶在缩小Lk变异方面似乎不大。通过大幅度消除钩状并列的小圆圈中的扭纹,可以合理化此行为。在我们的模拟过程中,我们发现了钩状并置的扭曲变化,它对Lk方差变窄的影响甚至比钩状并置更显着。对于扩展的并置集,我们检测到Lk缩小势与给定并置对数解对和解构势之间的显着相关性,这种趋势让人联想到对来自多种生物的2型拓扑异构酶进行实验测量发现的比例关系。理论与实验之间的一致观点认为,在钩状或扭曲钩状DNA并列位置存在2型拓扑异构酶作用。

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