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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >The origins and evolution of functional modules: lessons from protein complexes
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The origins and evolution of functional modules: lessons from protein complexes

机译:功能模块的起源和演变:蛋白质复合物的教训

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Modularity is an attribute of a system that can be decomposed into a set of cohesive entities that are loosely coupled. Many cellular networks can be decomposed into functional modules-each functionally separable from the other modules. The protein complexes in physical protein interaction networks are a good example of this, and here we focus on their origins and evolution. We investigate the emergence of protein complexes and physical interactions between proteins by duplication, and review other mechanisms. We dissect the dataset of protein complexes of known three-dimensional structure, and show that roughly 90% of these complexes contain contacts between identical proteins within the same complex. Proteins that are shared across different complexes occur frequently, and they tend to be essential genes more often than members of a single protein complex. We also provide a perspective on the evolutionary mechanisms driving the growth of other modular cellular networks such as transcriptional regulatory and metabolic networks.
机译:模块化是系统的属性,可以分解为一组松散耦合的内聚实体。许多蜂窝网络可以分解为功能模块-每个功能模块都可以与其他模块分离。物理蛋白质相互作用网络中的蛋白质复合物就是一个很好的例子,在这里,我们重点介绍它们的起源和进化。我们通过重复研究蛋白质复合物的出现和蛋白质之间的物理相互作用,并综述其他机制。我们剖析了已知三维结构的蛋白质复合物的数据集,并显示这些复合物中大约90%包含同一复合物中相同蛋白质之间的接触。跨不同复合物共享的蛋白质经常出现,并且它们往往是必不可少的基因,而不是单个蛋白质复合物的成员。我们还提供了有关驱动其他模块化细胞网络(如转录调节和代谢网络)增长的进化机制的观点。

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