Bravo Jerónimo, Aloy Patrick
Centro Nacional de Investigaciones Oncológicas, C/Melchor Fernández Almagro 3, 28029 Madrid, Spain.
Curr Opin Struct Biol. 2006 Jun;16(3):385-92. doi: 10.1016/j.sbi.2006.05.003. Epub 2006 May 18.
Most cellular processes are carried out by macromolecular assemblies and regulated through a complex network of transient protein-protein interactions. Genome-wide interaction discovery experiments are already delivering the first drafts of whole organism interactomes and, thus, depicting the limits of the interaction space. However, a complete understanding of molecular interactions can only come from high-resolution three-dimensional structures, as they provide key atomic details about the binding interfaces. The launch of structural genomics initiatives focused on protein interactions and complexes could quickly fill up the interaction space with structural details, offering a new perspective on how cell networks operate at atomic level. Clear target selection strategies that rationally identify the key interactions and complexes that should be first tackled are fundamental to maximize the return, minimize the costs and prevent experimental difficulties.
大多数细胞过程由大分子组装体执行,并通过瞬时蛋白质-蛋白质相互作用的复杂网络进行调节。全基因组相互作用发现实验已经给出了全生物体相互作用组的初稿,从而描绘出相互作用空间的边界。然而,对分子相互作用的全面理解只能来自高分辨率的三维结构,因为它们提供了有关结合界面的关键原子细节。专注于蛋白质相互作用和复合物的结构基因组学计划的启动,可以迅速用结构细节填满相互作用空间,为细胞网络在原子水平上如何运作提供新的视角。合理识别应首先处理的关键相互作用和复合物的清晰目标选择策略,对于最大化回报、最小化成本以及避免实验困难至关重要。