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Analysis of the thermodynamic information content of a Homo sapiens structural database reveals hierarchical thermodynamic organization

机译:对智人结构数据库的热力学信息内容的分析揭示了分层的热力学组织

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摘要

Classification of the amounts and types of lower order structural elements in proteins is a prerequisite to effective comparisons between protein folds. In an effort to provide an additional vehicle for fold comparison, we present an alternative classification scheme whereby protein folds are represented in statistical thermodynamic terms in such a way as to illuminate the energetic building blocks within protein structures. The thermodynamic relationship is examined between amino acid sequences and the conformational ensembles for a database of 159 Homo sapiens protein structures ranging from 50 to 250 amino acids. Using hierarchical clustering, it is shown through fold-recognition experiments that (1) eight thermodynamic environmental descriptors sufficiently accounts for the energetic variation within the native state ensembles of the H. sapiens structural database, (2) an amino acid library of only six residue types is sufficient to encode >90% of the thermodynamic information required for fold specificity in the entire database, and (3) structural resolution of the statistically derived environments reveals sequential cooperative segments throughout the protein, which are independent of secondary structure. As the first level of thermodynamic organization in proteins, these segments represent the thermodynamic counterpart to secondary structure.
机译:蛋白质中低级结构元素的数量和类型的分类是有效比较蛋白质折叠倍数的前提。为了提供用于折叠比较的其他媒介,我们提出了一种替代分类方案,其中蛋白质折叠以统计热力学术语表示,以照亮蛋白质结构内的能量结构单元的方式。在159个智人蛋白质结构数据库(范围从50到250个氨基酸)中,检查了氨基酸序列与构象集合之间的热力学关系。使用层次聚类,通过折叠识别实验显示:(1)八个热力学环境描述符充分说明了智人结构数据库的原始状态集合内的能量变化,(2)仅六个残基的氨基酸库这些类型足以编码整个数据库中折叠特异性所需的> 90%的热力学信息,并且(3)统计衍生环境的结构解析揭示了整个蛋白质中的连续协作片段,而这些片段独立于二级结构。作为蛋白质中热力学组织的第一级,这些片段代表了二级结构的热力学对应物。

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