Hu Chang-Deng, Kerppola Tom K
Howard Hughes Medical Institute and Department of Biological Chemistry, University of Michigan Medical School, Ann Arbor, MI 48109-0650, USA.
Nat Biotechnol. 2003 May;21(5):539-45. doi: 10.1038/nbt816. Epub 2003 Apr 14.
The specificity of biological regulatory mechanisms relies on selective interactions between different proteins in different cell types and in response to different extracellular signals. We describe a bimolecular fluorescence complementation (BiFC) approach for the simultaneous visualization of multiple protein interactions in the same cell. This approach is based on complementation between fragments of fluorescent proteins with different spectral characteristics. We have identified 12 bimolecular fluorescent complexes that correspond to 7 different spectral classes. Bimolecular complex formation between fragments of different fluorescent proteins did not differentially affect the dimerization efficiency of the bZIP domains of Fos and Jun or the subcellular sites of interactions between these domains. Multicolor BiFC enables visualization of interactions between different proteins in the same cell and comparison of the efficiencies of complex formation with alternative interaction partners.
生物调节机制的特异性依赖于不同细胞类型中不同蛋白质之间以及对不同细胞外信号的选择性相互作用。我们描述了一种双分子荧光互补(BiFC)方法,用于在同一细胞中同时可视化多种蛋白质相互作用。该方法基于具有不同光谱特征的荧光蛋白片段之间的互补。我们已经鉴定出12种双分子荧光复合物,它们对应于7种不同的光谱类别。不同荧光蛋白片段之间的双分子复合物形成不会差异影响Fos和Jun的bZIP结构域的二聚化效率或这些结构域之间相互作用的亚细胞位点。多色BiFC能够可视化同一细胞中不同蛋白质之间的相互作用,并比较与替代相互作用伙伴形成复合物的效率。