Xia Jun-Feng, Wang Shu-Lin, Lei Ying-Ke
Intelligent Computing Laboratory, Hefei Institute of Intelligent Machines, Chinese Academy of Sciences, Hefei, Anhui, 230031, China.
Protein Pept Lett. 2010 Sep;17(9):1069-78. doi: 10.2174/092986610791760405.
Protein-protein interactions (PPIs) are key components of most cellular processes, so identification of PPIs is at the heart of functional genomics. A number of experimental techniques have been developed to discover the PPI networks of several organisms. However, the accuracy and coverage of these techniques have proven to be limited. Therefore, it is important to develop computational methods to assist in the design and validation of experimental studies and for the prediction of interaction partners. Here, we provide a critical overview of existing computational methods including genomic context method, structure-based method, domain-based method and sequence-based method. While an exhaustive list of methods is not presented, we analyze the relative strengths and weaknesses for each of the methods discussed, as well as a broader perspective on computational techniques for determining PPIs. In addition to algorithms for interaction prediction, description of many useful databases pertaining to PPIs is also provided.
蛋白质-蛋白质相互作用(PPI)是大多数细胞过程的关键组成部分,因此PPI的识别是功能基因组学的核心。已经开发了许多实验技术来发现多种生物体的PPI网络。然而,这些技术的准确性和覆盖范围已被证明是有限的。因此,开发计算方法以协助实验研究的设计和验证以及预测相互作用伙伴非常重要。在这里,我们对现有的计算方法进行了批判性概述,包括基因组上下文方法、基于结构的方法、基于结构域的方法和基于序列的方法。虽然没有列出详尽的方法列表,但我们分析了所讨论的每种方法的相对优缺点,以及关于确定PPI的计算技术的更广泛观点。除了用于相互作用预测的算法外,还提供了许多与PPI相关的有用数据库的描述。