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Sequence-dependent thermodynamics of a coarse-grained DNA model

机译:粗粒DNA模型的序列依赖性热力学

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We introduce a sequence-dependent parametrization for a coarse-grained DNA model [T. E. Ouldridge, A. A. Louis, and J. P. K. Doye, J. Chem. Phys. 134, 085101 (2011)]10.1063/1.3552946 originally designed to reproduce the properties of DNA molecules with average sequences. The new parametrization introduces sequence-dependent stacking and base-pairing interaction strengths chosen to reproduce the melting temperatures of short duplexes. By developing a histogram reweighting technique, we are able to fit our parameters to the melting temperatures of thousands of sequences. To demonstrate the flexibility of the model, we study the effects of sequence on: (a) the heterogeneous stacking transition of single strands, (b) the tendency of a duplex to fray at its melting point, (c) the effects of stacking strength in the loop on the melting temperature of hairpins, (d) the force-extension properties of single strands, and (e) the structure of a kissing-loop complex. Where possible, we compare our results with experimental data and find a good agreement. A simulation code called oxDNA, implementing our model, is available as a free software.
机译:我们为粗粒DNA模型[T. E.Ouldridge,A.A.Louis和J.P.K.Doye,J.Chem。物理134,085101(2011)] 10.1063 / 1.3552946最初旨在复制具有平均序列的DNA分子的特性。新的参数化技术引入了依赖序列的堆叠和碱基配对相互作用强度,这些强度被选择来重现短双链体的解链温度。通过开发直方图重加权技术,我们能够使我们的参数适合数千个序列的解链温度。为了证明模型的灵活性,我们研究了序列对以下方面的影响:(a)单链的异质堆积过渡,(b)双链体在其熔点处磨损的趋势,(c)堆积强度的影响在发夹融化温度的环中,(d)单链的力-延伸特性,以及(e)接吻-环复合物的结构。在可能的情况下,我们将我们的结果与实验数据进行比较,并找到一个很好的协议。作为我们的模型的实现,称为oxDNA的仿真代码可作为免费软件获得。

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