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Brownian-dynamics simulations of metal-ion binding to four-way junctions

机译:金属离子与四向键结合的布朗动力学模拟

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摘要

Four-way junctions (4Hs) are important intermediates in DNA rearrangements such as genetic recombination. Under the influence of multivalent cations these molecules undergo a conformational change, from an extended planar form to a quasi-continuous stacked X-structure. Recently, a number of X-ray structures and a nuclear magnetic resonance (NMR) structure of 4Hs have been reported and in three of these the position of multivalent cations is revealed. These structures belong to two main families, characterized by the angle between the two co-axial stacked helices, which is either around +40 to +55° or around –70 to –80°. To investigate the role of metal-ion binding on the conformation of folded 4Hs we performed Brownian-dynamics simulations on the set of available structures. The simulations confirm the proposed metal-ion binding sites in the NMR structure and in one of the X-ray structures. Furthermore, the calculations suggest positions for metal-ion binding in the other X-ray structures. The results show a striking dependence of the ion density on the helical environment (B-helix or A-helix) and the structural family.
机译:四向连接(4Hs)是DNA重排(如基因重组)中的重要中间体。在多价阳离子的影响下,这些分子经历构象变化,从延伸的平面形式到准连续的堆叠X结构。最近,已经报道了4Hs的许多X射线结构和核磁共振(NMR)结构,并且在其中的三个中揭示了多价阳离子的位置。这些结构属于两个主要族,其特征是两个同轴堆叠螺旋之间的夹角约为+40至+ 55°或–70至–80°。为了研究金属离子结合在折叠的4Hs构象上的作用,我们对可用结构进行了布朗动力学模拟。模拟证实了在NMR结构和X射线结构之一中建议的金属离子结合位点。此外,计算结果表明了其他X射线结构中金属离子结合的位置。结果表明,离子密度对螺旋环境(B螺旋或A螺旋)和结构族的依赖性显着。

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