Kerppola Tom K
Department of Biological Chemistry, Howard Hughes Medical Institute, University of Michigan Medical School, Ann Arbor, Michigan 48109, USA.
Methods Cell Biol. 2008;85:431-70. doi: 10.1016/S0091-679X(08)85019-4.
A variety of experimental methods have been developed for the analysis of protein interactions. The majority of these methods either require disruption of the cells to detect molecular interactions or rely on indirect detection of the protein interaction. The bimolecular fluorescence complementation (BiFC) assay provides a direct approach for the visualization of molecular interactions in living cells and organisms. The BiFC approach is based on the facilitated association between two fragments of a fluorescent protein when the fragments are brought together by an interaction between proteins fused to the fragments. The BiFC approach has been used for visualization of interactions among a variety of structurally diverse interaction partners in many different cell types. It enables detection of transient complexes as well as complexes formed by a subpopulation of the interaction partners. It is essential to include negative controls in each experiment in which the interface between the interaction partners has been mutated or deleted. The BiFC assay has been adapted for simultaneous visualization of multiple protein complexes in the same cell and the competition for shared interaction partners. A ubiquitin-mediated fluorescence complementation assay has also been developed for visualization of the covalent modification of proteins by ubiquitin family peptides. These fluorescence complementation assays have a great potential to illuminate a variety of biological interactions in the future.
已经开发出多种用于分析蛋白质相互作用的实验方法。这些方法中的大多数要么需要破坏细胞来检测分子相互作用,要么依赖于对蛋白质相互作用的间接检测。双分子荧光互补(BiFC)分析为在活细胞和生物体中可视化分子相互作用提供了一种直接方法。BiFC方法基于当荧光蛋白的两个片段通过与片段融合的蛋白质之间的相互作用而聚集在一起时,它们之间促进的缔合。BiFC方法已用于在许多不同细胞类型中可视化多种结构不同的相互作用伙伴之间的相互作用。它能够检测瞬时复合物以及由相互作用伙伴的亚群形成的复合物。在每个实验中,必须包括相互作用伙伴之间的界面已发生突变或缺失的阴性对照。BiFC分析已适用于在同一细胞中同时可视化多种蛋白质复合物以及对共享相互作用伙伴的竞争。还开发了一种泛素介导的荧光互补分析,用于可视化泛素家族肽对蛋白质的共价修饰。这些荧光互补分析在未来有很大潜力阐明各种生物相互作用。