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首页> 外文期刊>Journal of Bioinformatics and Computational Biology >From the static interactome to dynamic protein complexes: Three challenges
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From the static interactome to dynamic protein complexes: Three challenges

机译:从静态相互作用组到动态蛋白质复合物:三个挑战

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Protein interactions and complexes behave in a dynamic fashion, but this dynamism is not captured by interaction screening technologies, and not preserved in protein-protein interaction (PPI) networks. The analysis of static interaction data to derive dynamic protein complexes leads to several challenges, of which we identify three. First, many proteins participate in multiple complexes, leading to overlapping complexes embedded within highly-connected regions of the PPI network. This makes it difficult to accurately delimit the boundaries of such complexes. Second, many condition-and location-specific PPIs are not detected, leading to sparsely-connected complexes that cannot be picked out by clustering algorithms. Third, the majority of complexes are small complexes (made up of two or three proteins), which are extra sensitive to the effects of extraneous edges and missing co-complex edges. We show that many existing complex-discovery algorithms have trouble predicting such complexes, and show that our insight into the disparity between the static interactome and dynamic protein complexes can be used to improve the performance of complex discovery.
机译:蛋白质相互作用和复合物以动态方式表现,但是这种动力学没有被相互作用筛选技术捕获,也没有保留在蛋白质-蛋白质相互作用(PPI)网络中。静态相互作用数据的分析以得出动态蛋白质复合物导致了几个挑战,我们确定了三个挑战。首先,许多蛋白质参与了多种复合物,导致重叠的复合物嵌入到PPI网络的高度连接区域中。这使得难以准确地划定此类复合物的边界。第二,未检测到许多特定于条件和位置的PPI,导致稀疏连接的复合物无法通过聚类算法挑选出来。第三,大多数复合物是小的复合物(由两种或三种蛋白质组成),它们对外部边缘和缺失的复合体边缘的影响特别敏感。我们展示了许多现有的复杂物发现算法都难以预测此类复杂物,并表明我们对静态相互作用基因组和动态蛋白复杂物之间差异的洞察力可用于改善复杂物发现的性能。

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