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Inferring domain-domain interactions from protein-protein interactions in the complex network conformation

机译:从复杂网络构象中的蛋白质间相互作用推断域间相互作用

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摘要

BackgroundAs protein domains are functional and structural units of proteins, a large proportion of protein-protein interactions (PPIs) are achieved by domain-domain interactions (DDIs), many computational efforts have been made to identify DDIs from experimental PPIs since high throughput technologies have produced a large number of PPIs for different species. These methods can be separated into two categories: deterministic and probabilistic. In deterministic methods, parsimony assumption has been utilized. Parsimony principle has been widely used in computational biology as the evolution of the nature is considered as a continuous optimization process. In the context of identifying DDIs, parsimony methods try to find a minimal set of DDIs that can explain the observed PPIs. This category of methods are promising since they can be formulated and solved easily. Besides, researches have shown that they can detect specific DDIs, which is often hard for many probabilistic methods. We notice that existing methods just view PPI networks as simply assembled by single interactions, but there is now ample evidence that PPI networks should be considered in a global (systematic) point of view for it exhibits general properties of complex networks, such as 'scale-free' and 'small-world'.
机译:背景技术由于蛋白质结构域是蛋白质的功能和结构单元,因此很大一部分蛋白质-蛋白质相互作用(PPI)是通过域-域相互作用(DDI)实现的,因此由于高通量技术的发展,人们已经进行了许多计算工作来从实验PPI中识别DDI。为不同物种生产了大量的PPI。这些方法可以分为两类:确定性方法和概率性方法。在确定性方法中,已使用简约假设。简约原理已被广泛用于计算生物学,因为自然界的进化被认为是一个连续的优化过程。在识别DDI的上下文中,简约方法试图找到可以解释所观察到的PPI的最小DDI集。这类方法很有希望,因为它们很容易制定和解决。此外,研究表明,它们可以检测特定的DDI,这对于许多概率方法而言通常很困难。我们注意到,现有方法只是将PPI网络视为简单地由单个交互组装而成,但是现在有充分的证据表明,应该从全局(系统的)观点考虑PPI网络,因为它展现了复杂网络的一般特性,例如“规模” -免费”和“小世界”。

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