首页> 外文期刊>Nucleic Acids Research >In the absence of writhe, DNA relieves torsional stress with localized, sequence-dependent structural failure to preserve B-form.
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In the absence of writhe, DNA relieves torsional stress with localized, sequence-dependent structural failure to preserve B-form.

机译:在没有扭曲的情况下,DNA通过局部,依赖序列的结构破坏来保留B型,从而减轻了扭转压力。

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摘要

To understand how underwinding and overwinding the DNA helix affects its structure, we simulated 19 independent DNA systems with fixed degrees of twist using molecular dynamics in a system that does not allow writhe. Underwinding DNA induced spontaneous, sequence-dependent base flipping and local denaturation, while overwinding DNA induced the formation of Pauling-like DNA (P-DNA). The winding resulted in a bimodal state simultaneously including local structural failure and B-form DNA for both underwinding and extreme overwinding. Our simulations suggest that base flipping and local denaturation may provide a landscape influencing protein recognition of DNA sequence to affect, for examples, replication, transcription and recombination. Additionally, our findings help explain results from single-molecule experiments and demonstrate that elastic rod models are strictly valid on average only for unstressed or overwound DNA up to P-DNA formation. Finally, our data support a model in which base flipping can result from torsional stress.
机译:为了了解绕下和绕过DNA螺旋如何影响其结构,我们在不允许扭曲的系统中使用分子动力学模拟了固定扭曲度的19个独立DNA系统。绕下DNA引起自发的,依赖序列的碱基翻转和局部变性,而绕过DNA引起鲍林样DNA(P-DNA)的形成。缠绕导致双峰状态同时发生,包括局部结构破坏和B型DNA不足,从而造成欠卷和极端过卷。我们的模拟结果表明碱基翻转和局部变性可能会影响DNA序列的蛋白质识别,从而影响复制,转录和重组。此外,我们的发现有助于解释单分子实验的结果,并证明弹性杆模型平均仅对无应力或过度缠绕的DNA直至形成P-DNA严格有效。最终,我们的数据支持了一个模型,在该模型中,扭转应力会导致基础翻转。

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