Abstract
Protein-protein interactions are important for various biological and cellular processes. To analyze proteinprotein interactions in living cells, the bimolecular fluorescence complementation (BiFC) assay, based on structural complementation of two non-fluorescent N- and C-terminal fragments from a fluorescent protein, has been developed and widely used in various research fields. Here I report a bright green-colored BiFC assay in living plant cells by using the Nterminal fragment (GN) of green fluorescent protein-S65T (GFP-S65T) and the C-terminal fragment (CC) of cyan fluorescent protein (CFP), but not GN and the C-terminal fragment (GC) of GFP. Fluorescence intensity of the GN/CCbased BiFC was 7-fold higher than that of the GN/GC-based BiFC. The emission spectrum of the GN/CC-based BiFC in planta was identical to that of full-length GFP-S65T. Ala163 residue within the CC fragment was found to be responsible for the improvement of the BiFC efficiency. These findings provide a BiFC method for in vivo protein-protein interaction studies to many GFP users in various research fields. © 2011 The Japanese Society for Plant Cell and Molecular Biology.
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Kodama, Y. (2011). A bright green-colored bimolecular fluorescence complementation assay in living plant cells. Plant Biotechnology. https://doi.org/10.5511/plantbiotechnology.10.1105a
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