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A Parallel Implementation of the Wuchty Algorithm with Additional Experimental Filters to More Thoroughly Explore RNA Conformational Space

机译:Wuchty算法与其他实验过滤器的并行实现可以更彻底地探索RNA构象空间

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摘要

We present new modifications to the Wuchty algorithm in order to better define and explore possible conformations for an RNA sequence. The new features, including parallelization, energy-independent lonely pair constraints, context-dependent chemical probing constraints, helix filters, and optional multibranch loops, provide useful tools for exploring the landscape of RNA folding. Chemical probing alone may not necessarily define a single unique structure. The helix filters and optional multibranch loops are global constraints on RNA structure that are an especially useful tool for generating models of encapsidated viral RNA for which cryoelectron microscopy or crystallography data may be available. The computations generate a combinatorially complete set of structures near a free energy minimum and thus provide data on the density and diversity of structures near the bottom of a folding funnel for an RNA sequence. The conformational landscapes for some RNA sequences may resemble a low, wide basin rather than a steep funnel that converges to a single structure.
机译:我们提出了对Wuchty算法的新修改,以便更好地定义和探索RNA序列的可能构象。这些新功能包括并行化,与能量无关的孤独对约束,与上下文有关的化学探测约束,螺旋过滤器和可选的多分支环,这些功能为探索RNA折叠的格局提供了有用的工具。单独的化学探测不一定会定义一个唯一的结构。螺旋过滤器和可选的多分支环是对RNA结构的全局约束,这对于生成衣壳化病毒RNA的模型特别有用,对于该模型可以使用冷冻电子显微镜或晶体学数据。该计算产生了接近自由能最小值的组合结构的完整集合,并因此提供了有关折叠序列底部附近的RNA序列的密度和多样性的数据。某些RNA序列的构象景观可能类似于低而宽的盆地,而不是会聚为单个结构的陡峭漏斗。

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