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Deciphering Supramolecular Structures with Protein-Protein Interaction Network Modeling

机译:蛋白质-蛋白质相互作用网络模型破译超分子结构

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摘要

Many biological molecules are assembled into supramolecules that are essential to perform complicated functions in the cell. However, experimental information about the structures of supramolecules is not sufficient at this point. We developed a method of predicting and modeling the structures of supramolecules in a biological network by combining structural data of the Protein Data Bank (PDB) and interaction data in IntAct databases. Templates for binary complexes in IntAct were extracted from PDB. Modeling was attempted by assembling binary complexes with superposed shared subunits. A total of 3,197 models were constructed, and 1,306 (41% of the total) contained at least one subunit absent from experimental structures. The models also suggested 970 (25% of the total) experimentally undetected subunit interfaces, and 41 human disease-related amino acid variants were mapped onto these model-suggested interfaces. The models demonstrated that protein-protein interaction network modeling is useful to fill the information gap between biological networks and structures.
机译:许多生物分子被组装成超分子,这对于在细胞中执行复杂功能至关重要。但是,有关超分子结构的实验信息在这一点上还不够。我们通过结合蛋白质数据库(PDB)的结构数据和IntAct数据库中的相互作用数据,开发了一种预测和建模生物网络中超分子结构的方法。从PDB中提取了IntAct中二元复合物的模板。通过组装具有重叠共享子单元的二元复合物来尝试建模。共构建了3,197个模型,其中1,306个(占总数的41%)包含至少一个实验结构中不存在的亚基。该模型还建议在实验中未检测到970个(占总数的25%)亚基界面,并将41种与人类疾病相关的氨基酸变体映射到这些模型建议的界面上。这些模型表明,蛋白质-蛋白质相互作用网络建模对于填补生物网络和结构之间的信息空白很有用。

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