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蛋白质-蛋白质相互作用网络:从不确定性到分子细节

Networks of ProteinProtein Interactions: From Uncertainty to Molecular Details.

作者信息

Garcia-Garcia Javier, Bonet Jaume, Guney Emre, Fornes Oriol, Planas Joan, Oliva Baldo

机构信息

Structural Bioinformatics Group, GRIB-IMIM, Universitat Pompeu Fabra, Barcelona Research Park of Biomedicine (PRBB), Catalonia, Spain.

出版信息

Mol Inform. 2012 May;31(5):342-62. doi: 10.1002/minf.201200005. Epub 2012 Apr 30.

Abstract

Proteins are the bricks and mortar of cells. The work of proteins is structural and functional, as they are the principal element of the organization of the cell architecture, but they also play a relevant role in its metabolism and regulation. To perform all these functions, proteins need to interact with each other and with other bio-molecules, either to form complexes or to recognize precise targets of their action. For instance, a particular transcription factor may activate one gene or another depending on its interactions with other proteins and not only with DNA. Hence, the ability of a protein to interact with other bio-molecules, and the partners they have at each particular time and location can be crucial to characterize the role of a protein. Proteins rarely act alone; they rather constitute a mingled network of physical interactions or other types of relationships (such as metabolic and regulatory) or signaling cascades. In this context, understanding the function of a protein implies to recognize the members of its neighborhood and to grasp how they associate, both at the systemic and atomic level. The network of physical interactions between the proteins of a system, cell or organism, is defined as the interactome. The purpose of this review is to deepen the description of interactomes at different levels of detail: from the molecular structure of complexes to the global topology of the network of interactions. The approaches and techniques applied experimentally and computationally to attain each level are depicted. The limits of each technique and its integration into a model network, the challenges and actual problems of completeness of an interactome, and the reliability of the interactions are reviewed and summarized. Finally, the application of the current knowledge of protein-protein interactions on modern network medicine and protein function annotation is also explored.

摘要

蛋白质是细胞的砖石。蛋白质的作用兼具结构和功能方面,因为它们是细胞结构组织的主要成分,但在细胞代谢和调节中也发挥着重要作用。为了执行所有这些功能,蛋白质需要相互作用,并与其他生物分子相互作用,要么形成复合物,要么识别其作用的精确靶点。例如,特定的转录因子可能会根据其与其他蛋白质的相互作用,而不仅仅是与DNA的相互作用,来激活一个或另一个基因。因此,蛋白质与其他生物分子相互作用的能力,以及它们在每个特定时间和位置所具有的伙伴,对于表征蛋白质的作用可能至关重要。蛋白质很少单独起作用;它们构成了一个由物理相互作用或其他类型关系(如代谢和调节)或信号级联组成的混合网络。在这种情况下,理解蛋白质的功能意味着要识别其相邻分子,并掌握它们在系统和原子水平上是如何关联的。系统、细胞或生物体中蛋白质之间的物理相互作用网络被定义为相互作用组。本综述的目的是更深入地描述不同详细程度的相互作用组:从复合物的分子结构到相互作用网络的全局拓扑结构。描述了通过实验和计算应用于达到每个水平的方法和技术。综述并总结了每种技术的局限性及其融入模型网络的情况、相互作用组完整性的挑战和实际问题,以及相互作用的可靠性。最后,还探讨了蛋白质 - 蛋白质相互作用的现有知识在现代网络医学和蛋白质功能注释中的应用。

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