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A phase transition in energy-filtered RNA secondary structures

机译:能量过滤RNA二级结构的相变

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摘要

In this paper we study the effect of energy parameters on minimum free energy (mfe) RNA secondary structures. Employing a simplified combinatorial energy model, that is only dependent on the diagram representation and that is not sequence specific, we prove the following dichotomy result. Mfe structures derived via the Turner energy parameters contain only finitely many complex irreducible substructures and just minor parameter changes produce a class of mfe-structures that contain a large number of small irreducibles. We localize the exact point where the distribution of irreducibles experiences this phase transition from a discrete limit to a central limit distribution and subsequently put our result into the context of quantifying the effect of sparsification of the folding of these respective mfe-structures. We show that the sparsification of realistic mfe-structures leads to a constant time and space reduction and that the sparsifcation of the folding of structures with modified parameters leads to a linear time and space reduction. We furthermore identify the limit distribution at the phase transition as a Rayleigh distribution.
机译:在本文中,我们研究了能量参数对最小自由能(mfe)RNA二级结构的影响。使用简化的组合能量模型,该模型仅依赖于图表示,并且不特定于序列,因此证明了以下二分法结果。通过Turner能量参数得出的Mfe结构仅包含有限的许多复杂的不可约子结构,只有很小的参数变化就会产生一类mfe结构,其中包含大量小的不可约量。我们将不可还原的分布经历了从离散极限到中心极限分布的这一相变的确切点,然后将我们的结果放入量化这些mfe结构折叠的稀疏效应的上下文中。我们表明,对实际mfe结构的稀疏化导致恒定的时间和空间减少,而对结构进行折叠且参数修改后的稀疏化导致线性的时间和空间减少。我们进一步将在相变处的极限分布确定为瑞利分布。

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