Department of Biomedical Sciences, Chung Shan Medical University, Taichung, Taiwan, ROC.
Institute of Molecular Medicine, National Cheng Kung University Medical College, Tainan, Taiwan, R. O. C.
Sci Rep. 2020 Feb 19;10(1):2936. doi: 10.1038/s41598-020-59891-7.
To visualize protein-protein interactions in Candida albicans with the bimolecular fluorescence complementation (BiFC) approach, we created a Tet-on system with the plasmids pWTN1 and pWTN2. Both plasmids bear a hygromycin B-resistant marker (CaHygB) that is compatible with the original Tet-on plasmid pNIM1, which carries a nourseothricin-resistant marker (CaSAT1). By using GFPmut2 and mCherry as reporters, we found that the two complementary Tet-on plasmids act synergistically in C. albicans with doxycycline in a dose-dependent manner and that expression of the fusion proteins, CaCdc11-GFPmut2 and mCherry-CaCdc10, derived from this system, is septum targeted. Furthermore, to allow detection of protein-protein interactions with the reassembly of a split fluorescent protein, we incorporated mCherry into our system. We generated pWTN1-RN and pNIM1-RC, which express the N-terminus (amino acids 1-159) and C-terminus (amino acids 160-237) of mCherry, respectively. To verify BiFC with mCherry, we created the pWTN1-CDC42-RN (or pWTN1-RN-CDC42) and pNIM1-RC-RDI1 plasmids. C. albicans cells containing these plasmids treated with doxycycline co-expressed the N- and C-terminal fragments of mCherry either N-terminally or C-terminally fused with CaCdc42 and CaRdi1, respectively, and the CaCdc42-CaRdi1 interaction reconstituted a functional form of mCherry. The establishment of this Tet-on-based BiFC system in C. albicans should facilitate the exploration of protein-protein interactions under a variety of conditions.
为了使用双分子荧光互补 (BiFC) 方法在白色念珠菌中可视化蛋白-蛋白相互作用,我们创建了一个带有质粒 pWTN1 和 pWTN2 的 Tet-on 系统。这两个质粒都带有潮霉素 B 抗性标记 (CaHygB),与原始的 Tet-on 质粒 pNIM1 兼容,后者带有新霉素抗性标记 (CaSAT1)。通过使用 GFPmut2 和 mCherry 作为报告基因,我们发现两个互补的 Tet-on 质粒在含有强力霉素的情况下在白色念珠菌中协同作用,并且源自该系统的融合蛋白 CaCdc11-GFPmut2 和 mCherry-CaCdc10 的表达是定位于隔膜的。此外,为了允许通过荧光蛋白的重新组装来检测蛋白-蛋白相互作用,我们将 mCherry 纳入我们的系统中。我们生成了 pWTN1-RN 和 pNIM1-RC,它们分别表达 mCherry 的 N 端 (氨基酸 1-159) 和 C 端 (氨基酸 160-237)。为了验证 mCherry 的 BiFC,我们创建了 pWTN1-CDC42-RN (或 pWTN1-RN-CDC42) 和 pNIM1-RC-RDI1 质粒。用强力霉素处理含有这些质粒的白色念珠菌细胞,分别将 CaCdc42 和 CaRdi1 的 N 端或 C 端融合的 mCherry 的 N 端和 C 端片段共表达,并且 CaCdc42-CaRdi1 相互作用重建了 mCherry 的功能形式。在白色念珠菌中建立这个基于 Tet-on 的 BiFC 系统应该有助于在各种条件下探索蛋白-蛋白相互作用。