首页> 外文期刊>Journal of Molecular Biology >Clustering of protein structural fragments reveals modular building block approach of nature.
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Clustering of protein structural fragments reveals modular building block approach of nature.

机译:蛋白质结构片段的聚类揭示了自然界的模块化构建方法。

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摘要

Structures of peptide fragments drawn from a protein can potentially occupy a vast conformational continuum. We co-ordinatize this conformational space with the help of geometric invariants and demonstrate that the peptide conformations of the currently available protein structures are heavily biased in favor of a finite number of conformational types or structural building blocks. This is achieved by representing a peptides' backbone structure with geometric invariants and then clustering peptides based on closeness of the geometric invariants. This results in 12,903 clusters, of which 2207 are made up of peptides drawn from functionally and/or structurally related proteins. These are termed "functional" clusters and provide clues about potential functional sites. The rest of the clusters, including the largest few, are made up of peptides drawn from unrelated proteins and are termed "structural" clusters. The largest clusters are of regular secondary structures such as helices and beta strands as well as of beta hairpins. Several categories of helices and strands are discovered based on geometric differences. In addition to the known classes of loops, we discover several new classes, which will be useful in protein structure modeling. Our algorithm does not require assignment of secondary structure and, therefore, overcomes the limitations in loop classification due to ambiguity in secondary structure assignment at loop boundaries.
机译:从蛋白质中提取的肽片段的结构可能会占据巨大的构象连续体。我们借助几何不变量来协调这种构象空间,并证明当前可用的蛋白质结构的肽构象严重偏向于有限数量的构象类型或结构构件。这是通过用几何不变式表示肽的主链结构,然后根据几何不变式的紧密性将肽聚类来实现的。这产生了12,903个簇,其中2207个簇由从功能和/或结构上相关的蛋白质中提取的肽组成。这些被称为“功能性”簇,并提供有关潜在功能性位点的线索。其余簇,包括最大的簇,由从无关蛋白质中提取的肽组成,被称为“结构”簇。最大的簇具有规则的二级结构,例如螺旋和β链以及β发夹。基于几何差异,发现了几类螺旋和股线。除了已知的循环类别外,我们还发现了几种新的类别,这些类别将在蛋白质结构建模中很有用。我们的算法不需要分配二级结构,因此,由于在循环边界处二级结构分配的含糊性,克服了循环分类的局限性。

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