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Configurational diffusion down a folding funnel describes the dynamics of DNA hairpins

机译:沿着折叠漏斗的配置扩散描述了DNA发夹的动力学

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摘要

Elucidating the mechanism of folding of polynucleotides depends on accurate estimates of free energy surfaces and a quantitative description of the kinetics of structure formation. Here, the kinetics of hairpin formation in single-stranded DNA are measured after a laser temperature jump. The kinetics are modeled as configurational diffusion on a free energy surface obtained from a statistical mechanical description of equilibrium melting profiles. The effective diffusion coefficient is found to be strongly temperature-dependent in the nucleation step as a result of formation of misfolded loops that do not lead to subsequent zipping. This simple system exhibits many of the features predicted from theoretical studies of protein folding, including a funnel-like energy surface with many folding pathways, trapping in misfolded conformations, and non-Arrhenius folding rates.
机译:阐明多核苷酸折叠的机制取决于对自由能表面的准确估计以及对结构形成动力学的定量描述。在此,在激光温度跃迁之后测量单链DNA中发夹形成的动力学。将动力学建模为在自由能表面上的构型扩散,该自由能表面是根据平衡熔融曲线的统计力学描述获得的。发现有效扩散系数在成核步骤中与温度密切相关,这是由于形成了不会导致随后压缩的错误折叠的环。这个简单的系统具有许多蛋白质折叠理论研究所预测的功能,包括具有许多折叠路径的漏斗状能量表面,陷在错误折叠的构象中以及非阿累尼乌斯折叠速率。

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