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模糊结构域:描述蛋白质结构域灵活性和相互依赖性的新方法。

Fuzzy domains: new way of describing flexibility and interdependence of the protein domains.

作者信息

Yesylevskyy Semen O, Kharkyanen Valery N

机构信息

Department of Physics of Biological Systems, Institute of Physics, National Academy of Science of Ukraine, Prospect Nauki, 46, Kiev-03039, Ukraine.

出版信息

Proteins. 2009 Mar;74(4):980-95. doi: 10.1002/prot.22208.

Abstract

We proposed the innovative method of domain identification based on the concept of the fuzzy domains. In this method each residue of the protein can belong to several domains simultaneously with certain weights, which reflect to what extent this residue shares the motion pattern of the given domain. Our method allows describing the fuzzy boundaries between the domains and the gradual changes of the motion pattern from one domain to the other. It provides the reasonable compromise between the continuous change of the protein dynamics from one residue to the other and the discrete description of the structure in terms of small number of domains. We suggested quantitative criterion, which shows the overall degree of domain flexibility in the protein. The concept of the fuzzy domains provides an innovative way of visualization of domain flexibility, which makes the gradual transitions between the domains clearly visible and comparable to available experimental and structural data. In the future, the concept of the fuzzy domains can be used in the coarse-grained simulations of the domain dynamics in order to account for internal protein flexibility.

摘要

我们基于模糊结构域的概念提出了一种创新的结构域识别方法。在该方法中,蛋白质的每个残基可以同时以一定权重属于多个结构域,这些权重反映了该残基与给定结构域运动模式的共享程度。我们的方法能够描述结构域之间的模糊边界以及运动模式从一个结构域到另一个结构域的逐渐变化。它在蛋白质动力学从一个残基到另一个残基的连续变化与用少量结构域对结构进行离散描述之间提供了合理的折衷。我们提出了定量标准,该标准显示了蛋白质中结构域灵活性的总体程度。模糊结构域的概念提供了一种创新的结构域灵活性可视化方式,使得结构域之间的逐渐转变清晰可见,并可与现有的实验和结构数据进行比较。未来,模糊结构域的概念可用于结构域动力学的粗粒度模拟中,以考虑蛋白质内部的灵活性。

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