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Relationship between Amino Acids Sequences and Protein Structures: Folding Patterns and Sequence Patterns

机译:氨基酸序列与蛋白质结构之间的关系:折叠模式和序列模式

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Two crucial problems of protein folding are considered here. First, the hypothesis, that all proteins with an identical SSS, regardless of degree of sequence identity among sequences have common sequence pattern. To find conserved positions and create a sequences pattern a new algorithm of the structure-based multiple sequences alignment was developed. An essential feature of the algorithm is that the alignment is based on residues that form hydrogen bond contacts between strands in protein structures. It was shown that SSS-specific sequence patterns have very high sensitivity for identifying protein structure and can be used for SSS prediction without any prior structural information. Second, the rules by which secondary structure elements - beta strands come together into supersecondary structure (SSS) - folding patterns. Knowledge of these patterns that uncover the spatial arrangement of strands will likely prove useful in protein structure prediction.
机译:这里考虑了蛋白质折叠的两个关键问题。首先,假说是,所有具有相同SSS的蛋白质,无论序列之间的序列同一性程度如何,都具有相同的序列模式。为了找到保守位置并创建序列模式,开发了基于结构的多序列比对的新算法。该算法的一个基本特征是,比对基于蛋白质结构中链之间形成氢键接触的残基。结果表明,SSS特异的序列模式对于识别蛋白质结构具有很高的敏感性,并且可以用于SSS预测而无需任何先前的结构信息。第二,二级结构元素(β链)组合成超二级结构(SSS)的规则。这些发现链的空间排列的模式的知识可能会证明对蛋白质结构预测有用。

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