Occhialini Alessandro
Department of Food Science, University of Tennessee, Food Safety and Processing Building, 2600 River Dr., Knoxville, Tennessee, TN, 37996, USA.
Methods Mol Biol. 2018;1789:177-194. doi: 10.1007/978-1-4939-7856-4_14.
The bimolecular fluorescent complementation (BiFC) is a fluorescent complementation method largely used to investigate protein-protein interaction in living cells. This method is based on the ability of two nonfluorescent fragments to assemble forming a native fluorescent reporter with the same spectral properties of the native reporter. Such fragments are fused to putative protein partners that in case of interaction will bring the two halves in close proximity, allowing for the reconstitution of an active fluorescent reporter. The BiFC has been used to investigate protein-protein interaction in a number of different organisms, including plants. In plant cells, many essential pathways of protein trafficking and subcellular localization necessitate the intervention of several protein units organized in multisubunit complexes. It is well known that vacuolar sorting of many secretory soluble proteins require the intervention of specific transmembrane cargo receptors able to interact forming dimers. In this chapter we describe a BiFC method for the efficient visualization of RMR (Receptor Membrane RING-H2) type 2 dimerization in agro-infiltrated Nicotiana benthamiana leaves. Furthermore, this relatively simple method represents an optimal strategy to test protein-protein interaction using any other putative protein partners of interest in plant cells.
双分子荧光互补(BiFC)是一种广泛用于研究活细胞中蛋白质-蛋白质相互作用的荧光互补方法。该方法基于两个无荧光片段组装形成具有与天然报告基因相同光谱特性的天然荧光报告基因的能力。这些片段与假定的蛋白质伴侣融合,在相互作用的情况下,这两个半部分将紧密靠近,从而使活性荧光报告基因得以重构。BiFC已被用于研究包括植物在内的多种不同生物体中的蛋白质-蛋白质相互作用。在植物细胞中,蛋白质运输和亚细胞定位的许多重要途径需要多个蛋白质单元以多亚基复合物的形式进行干预。众所周知,许多分泌性可溶性蛋白质的液泡分选需要特定跨膜货物受体的干预,这些受体能够相互作用形成二聚体。在本章中,我们描述了一种BiFC方法,用于在农杆菌浸润的本氏烟草叶片中高效可视化2型RMR(受体膜RING-H2)二聚化。此外,这种相对简单的方法是使用植物细胞中任何其他感兴趣的假定蛋白质伴侣来测试蛋白质-蛋白质相互作用的最佳策略。