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Determining the DNA stability parameters for the breathing dynamics of heterogeneous DNA by stochastic optimization

机译:通过随机优化确定异质DNA呼吸动力学的DNA稳定性参数

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摘要

We suggest that the thermodynamic stability parameters (nearest neighbor stacking and hydrogen bonding free energies) of double-stranded DNA molecules can be inferred reliably from time series of the size fluctuations (breathing) of local denaturation zones (bubbles). On the basis of the reconstructed bubble size distribution, this is achieved through stochastic optimization of the free energies in terms of simulated annealing. In particular, it is shown that even noisy time series allow the identification of the stability parameters at remarkable accuracy. This method will be useful to obtain the DNA stacking and hydrogen bonding free energies from single bubble breathing assays rather than equilibrium data.
机译:我们建议可以从局部变性区(气泡)的大小波动(呼吸)的时间序列可靠地推断出双链DNA分子的热力学稳定性参数(最近邻堆和氢键自由能)。在重构的气泡尺寸分布的基础上,这是通过根据模拟退火随机优化自由能来实现的。特别地,表明即使是嘈杂的时间序列也可以以显着的精度识别稳定性参数。该方法将有助于从单次气泡呼吸测定而不是平衡数据中获得DNA堆积和氢键结合自由能。

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