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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Computational linguistics: A new tool for exploring biopolymer structures and statistical mechanics
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Computational linguistics: A new tool for exploring biopolymer structures and statistical mechanics

机译:计算语言学:探索生物聚合物结构和统计力学的新工具

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摘要

Unlike homopolymers, biopolymers are composed of specific sequences of different types of monomers. In proteins and RNA molecules, one-dimensional sequence information encodes a three-dimensional fold, leading to a corresponding molecular function. Such folded structures are not treated adequately through traditional methods of polymer statistical mechanics. A promising new way to solve problems of the statistical mechanics of biomolecules comes from computational linguistics, the field that uses computers to parse and understand the sentences in natural languages. Here, we give two examples. First, we show that a dynamic programming method of computational linguistics gives a fast way to search protein models for native structures. Interestingly, the computational search process closely resembles the physical folding process. Second, linguistics-based dynamic programming methods are also useful for computing partition functions and densities of states for some foldable biopolymers - helix-bundle proteins are reviewed here. In these ways, computational linguistics is helping to solve problems of the searching and counting of biopolymer conformations.
机译:与均聚物不同,生物聚合物由不同类型单体的特定序列组成。在蛋白质和RNA分子中,一维序列信息编码三维折叠,从而导致相应的分子功能。通过聚合物统计力学的传统方法不能充分地处理这种折叠结构。解决生物分子统计力学问题的一种有希望的新方法来自计算语言学,该领域使用计算机来解析和理解自然语言中的句子。在这里,我们举两个例子。首先,我们展示了一种计算语言学的动态编程方法,为寻找天然结构的蛋白质模型提供了一种快速的方法。有趣的是,计算搜索过程非常类似于物理折叠过程。其次,基于语言学的动态编程方法也可用于计算某些可折叠生物聚合物的分区功能和状态密度-此处综述了螺旋束蛋白。通过这些方式,计算语言学正在帮助解决生物聚合物构象的搜索和计数问题。

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