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首页> 外文期刊>Journal of Bioinformatics and Computational Biology >SHEEP: A TOOL FOR DESCRIPTION OF β-SHEETS IN PROTEIN 3D STRUCTURES
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SHEEP: A TOOL FOR DESCRIPTION OF β-SHEETS IN PROTEIN 3D STRUCTURES

机译:羊:用于描述蛋白质3D结构中的β片的工具

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The description of a protein fold is a hard problem due to significant variability of main structural units, β-sheets and α-helixes, and their mutual arrangements. An adequate description of the structural units is an important step in objective protein structure classification, which to date is based on expert judgment in a number of cases. Explicit determination and description of structural units is more complicated for β-sheets than for α-helixes due to β-sheets variability both in composition and geometry. We have developed an algorithm that can significantly modify β-sheets detected by commonly used DSSP and Stride algorithms and represent the result as a “β-sheet map,” a table describing certain β-sheet features. In our approach, β-sheets (rather than β-strands) are considered as holistic objects. Both hydrogen bonds and geometrical restrains are explored for the determination of β-sheets. The algorithm is implemented in SheeP program. It was tested for prediction architectures of domains from 93 well-defined all-β and α/β SCOP protein domain families, and showed 93% of correct results. The Web-service http://mouse.belozersky.msu.ru/sheep allows to detect β-sheets in a given protein structure, visualize β-sheet maps, as well as input three-dimensional structures with highlighted β-sheets and their structural features.
机译:由于主要结构单元,β-折叠和α-螺旋及其相互排列的显着变化,蛋白质折叠的描述是一个难题。对结构单元的充分描述是客观蛋白质结构分类中的重要步骤,迄今为止,这是在许多情况下基于专家判断的基础。由于β-折叠在成分和几何形状方面的可变性,与α-螺旋相比,β-折叠的结构单元的明确确定和描述更为复杂。我们开发了一种算法,该算法可以显着修改通过常用DSSP和Stride算法检测到的β-折叠,并将结果表示为“β-折叠图”,该表描述了某些β-折叠的特征。在我们的方法中,β折叠(而不是β链)被视为整体对象。氢键和几何约束都用于测定β-折叠。该算法在SheeP程序中实现。测试了93个定义明确的全β和α/βSCOP蛋白结构域家族的结构域的预测架构,结果显示93%的正确结果。 Web服务http://mouse.belozersky.msu.ru/sheep允许检测给定蛋白质结构中的β-折叠,可视化β-折叠图,并输入带有突出显示的β-折叠及其特征的三维结构。结构特征。

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