Laboratoire Analyse et Modélisation pour la Biologie et l'Environnement, Université d'Evry Val d'Essonne, CNRS UMR 8587, Evry, France.
Mass Spectrom Rev. 2011 Mar-Apr;30(2):268-97. doi: 10.1002/mas.20278. Epub 2010 May 24.
Proteomes are intricate. Typically, thousands of proteins interact through physical association and post-translational modifications (PTMs) to give rise to the emergent functions of cells. Understanding these functions requires one to study proteomes as "systems" rather than collections of individual protein molecules. The abstraction of the interacting proteome to "protein networks" has recently gained much attention, as networks are effective representations, that lose specific molecular details, but provide the ability to see the proteome as a whole. Mostly two aspects of the proteome have been represented by network models: proteome-wide physical protein-protein-binding interactions organized into Protein Interaction Networks (PINs), and proteome-wide PTM relations organized into Protein Signaling Networks (PSNs). Mass spectrometry (MS) techniques have been shown to be essential to reveal both of these aspects on a proteome-wide scale. Techniques such as affinity purification followed by MS have been used to elucidate protein-protein interactions, and MS-based quantitative phosphoproteomics is critical to understand the structure and dynamics of signaling through the proteome. We here review the current state-of-the-art MS-based analytical pipelines for the purpose to characterize proteome-scale networks.
蛋白质组非常复杂。通常,数千种蛋白质通过物理相互作用和翻译后修饰 (PTMs) 相互作用,从而产生细胞的新兴功能。要了解这些功能,就需要将蛋白质组作为“系统”进行研究,而不是将其视为单个蛋白质分子的集合。将相互作用的蛋白质组抽象为“蛋白质网络”最近引起了广泛关注,因为网络是有效的表示形式,虽然失去了特定的分子细节,但提供了将蛋白质组视为整体的能力。网络模型主要代表了蛋白质组的两个方面:组织成蛋白质相互作用网络 (PINs) 的全蛋白质-蛋白质结合相互作用,以及组织成蛋白质信号网络 (PSNs) 的全蛋白质 PTM 关系。质谱 (MS) 技术已被证明对于在全蛋白质组范围内揭示这两个方面至关重要。例如,亲和纯化后结合 MS 已被用于阐明蛋白质-蛋白质相互作用,而基于 MS 的定量磷酸化蛋白质组学对于理解通过蛋白质组进行信号传递的结构和动态至关重要。在这里,我们回顾了当前基于 MS 的用于表征蛋白质组规模网络的分析管道的最新状态。