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SplitPocket: identification of protein functional surfaces and characterization of their spatial patterns

机译:SplitPocket:识别蛋白质功能表面并表征其空间模式

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摘要

SplitPocket () is a web server to identify functional surfaces of protein from structure coordinates. Using the Alpha Shape Theory, we previously developed an analytical approach to identify protein functional surfaces by the geometric concept of a split pocket, which is a pocket split by a binding ligand. Our geometric approach extracts site-specific spatial information from coordinates of structures. To reduce the search space, probe radii are designed according to the physicochemical textures of molecules. The method uses the weighted Delaunay triangulation and the discrete flow algorithm to obtain geometric measurements and spatial patterns for each predicted pocket. It can also measure the hydrophobicity on a surface patch. Furthermore, we quantify the evolutionary conservation of surface patches by an index derived from the entropy scores in HSSP (homology-derived secondary structure of proteins). We have used the method to examine ∼1.16 million potential pockets and identified the split pockets in >26 000 structures in the Protein Data Bank. This integrated web server of functional surfaces provides a source of spatial patterns to serve as templates for predicting the functional surfaces of unbound structures involved in binding activities. These spatial patterns should also be useful for protein functional inference, structural evolution and drug design.
机译:SplitPocket()是一个Web服务器,用于从结构坐标中识别蛋白质的功能表面。使用Alpha形状理论,我们先前开发了一种分析方法,该方法通过裂口的几何概念来识别蛋白质功能表面,裂口是通过结合配体进行裂口的。我们的几何方法从结构坐标中提取特定地点的空间信息。为了减少搜索空间,根据分子的物理化学结构设计了探针半径。该方法使用加权Delaunay三角剖分和离散流算法来获取每个预测口袋的几何尺寸和空间图案。它还可以测量表面贴剂上的疏水性。此外,我们通过从HSSP(蛋白质的同源性二级结构)中的熵得分得出的指数来量化表面补丁的进化保守性。我们已经使用该方法检查了约116万个潜在口袋,并在Protein Data Bank中识别了> 26 000个结构中的分裂口袋。功能表面的此集成Web服务器提供空间模式的来源,以用作模板来预测参与绑定活动的未绑定结构的功能表面。这些空间模式对于蛋白质功能推断,结构演变和药物设计也应是有用的。

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