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均聚物 DNA 序列中的气泡弛豫动力学。

Bubble Relaxation Dynamics in Homopolymer DNA Sequences.

机构信息

Nonlinear Dynamics and Chaos Group, Department of Mathematics and Applied Mathematics, University of Cape Town, Rondebosch 7701, South Africa.

Department of Materials Science, University of Patras, GR-26504 Rio, Greece.

出版信息

Molecules. 2023 Jan 20;28(3):1041. doi: 10.3390/molecules28031041.

Abstract

Understanding the inherent timescales of large bubbles in DNA is critical to a thorough comprehension of its physicochemical characteristics, as well as their potential role on helix opening and biological function. In this work, we employ the coarse-grained Peyrard-Bishop-Dauxois model of DNA to study relaxation dynamics of large bubbles in homopolymer DNA, using simulations up to the microsecond time scale. By studying energy autocorrelation functions of relatively large bubbles inserted into thermalised DNA molecules, we extract characteristic relaxation times from the equilibration process for both adenine-thymine (AT) and guanine-cytosine (GC) homopolymers. Bubbles of different amplitudes and widths are investigated through extensive statistics and appropriate fittings of their relaxation. Characteristic relaxation times increase with bubble amplitude and width. We show that, within the model, relaxation times are two orders of magnitude longer in GC sequences than in AT sequences. Overall, our results confirm that large bubbles leave a lasting impact on the molecule's dynamics, for times between 0.5-500 ns depending on the homopolymer type and bubble shape, thus clearly affecting long-time evolutions of the molecule.

摘要

理解 DNA 中大泡的固有时间尺度对于彻底理解其物理化学特性以及它们在螺旋开启和生物功能中的潜在作用至关重要。在这项工作中,我们使用 DNA 的粗粒 Peyrard-Bishop-Dauxois 模型来研究均聚物 DNA 中大泡的弛豫动力学,模拟时间长达微秒尺度。通过研究插入热平衡 DNA 分子中的相对大泡的能量自相关函数,我们从平衡过程中提取出腺嘌呤-胸腺嘧啶(AT)和鸟嘌呤-胞嘧啶(GC)均聚物的特征弛豫时间。通过广泛的统计和对其弛豫的适当拟合,研究了不同幅度和宽度的气泡。特征弛豫时间随气泡幅度和宽度的增加而增加。我们表明,在该模型中,GC 序列中的弛豫时间比 AT 序列长两个数量级。总的来说,我们的结果证实,大泡会对分子的动力学产生持久的影响,影响时间在 0.5-500 ns 之间,具体取决于均聚物类型和气泡形状,从而明显影响分子的长时间演化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fa7/9920605/1bec894b0048/molecules-28-01041-g001.jpg

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