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Modeling DNA beacons at the mesoscopic scale

机译:在介观尺度上建模DNA信标

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We report model calculations on DNA single strands which describe the equilibrium dynamics and kinetics of hairpin formation and melting. Modeling is at the level of single bases. Strand rigidity is described in terms of simple polymer models; alternative calculations performed using the freely rotating chain and the discrete Kratky-Porod models are reported. Stem formation is modeled according to the Peyrard-Bishop-Dauxois Hamiltonian. The kinetics of opening and losing is described in terms of a diffusion-controlled motion in an effective free-energy landscape. Melting profiles, dependence of melting temperature on loop length, and kinetic time scales are in semiquantitative agreement with experimental data obtained from fluorescent DNA beacons forming poly(T) loops. Variation in strand rigidity is not sufficient to account for the large activation enthalpy of closing and the strong loop length dependence observed in hairpins forming poly(A) loops. Implications for modeling single strands of DNA or RNA are discussed.
机译:我们报告了DNA单链的模型计算,描述了发夹形成和融化的平衡动力学和动力学。建模是在单一基础上进行的。用简单的聚合物模型描述了钢绞线的刚度。报告了使用自由旋转链和离散的Kratky-Porod模型执行的替代计算。茎的形成是根据Peyrard-Bishop-Dauxois哈密顿量建模的。打开和丢失的动力学是根据有效自由能态中的扩散控制运动来描述的。熔解曲线,熔解温度对环长度的依赖性以及动力学时间尺度与形成聚(T)环的荧光DNA信标获得的实验数据在半定量一致。股线刚度的变化不足以说明闭合的大激活焓和在形成poly(A)环的发夹中观察到的强环长度依赖性。讨论了建模DNA或RNA单链的含义。

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