State Key Laboratory of Resource Insects, Southwest University, Chongqing 400716, China.
Biomolecules. 2024 Jul 17;14(7):859. doi: 10.3390/biom14070859.
Signaling pathways are responsible for transmitting information between cells and regulating cell growth, differentiation, and death. Proteins in cells form complexes by interacting with each other through specific structural domains, playing a crucial role in various biological functions and cell signaling pathways. Protein-protein interactions (PPIs) within cell signaling pathways are essential for signal transmission and regulation. The spatiotemporal features of PPIs in signaling pathways are crucial for comprehending the regulatory mechanisms of signal transduction. Bimolecular fluorescence complementation (BiFC) is one kind of imaging tool for the direct visualization of PPIs in living cells and has been widely utilized to uncover novel PPIs in various organisms. BiFC demonstrates significant potential for application in various areas of biological research, drug development, disease diagnosis and treatment, and other related fields. This review systematically summarizes and analyzes the technical advancement of BiFC and its utilization in elucidating PPIs within established cell signaling pathways, including TOR, PI3K/Akt, Wnt/β-catenin, NF-κB, and MAPK. Additionally, it explores the application of this technology in revealing PPIs within the plant hormone signaling pathways of ethylene, auxin, Gibberellin, and abscisic acid. Using BiFC in conjunction with CRISPR-Cas9, live-cell imaging, and ultra-high-resolution microscopy will enhance our comprehension of PPIs in cell signaling pathways.
信号通路负责在细胞之间传递信息,并调节细胞的生长、分化和死亡。细胞中的蛋白质通过特定的结构域相互作用形成复合物,在各种生物功能和细胞信号通路中发挥着关键作用。细胞信号通路中的蛋白质-蛋白质相互作用(PPIs)对于信号转导的调节至关重要。PPIs 在信号通路中的时空特征对于理解信号转导的调节机制至关重要。双分子荧光互补(BiFC)是一种用于在活细胞中直接可视化 PPIs 的成像工具,已被广泛用于揭示各种生物体中的新的 PPIs。BiFC 在生物研究、药物开发、疾病诊断和治疗等相关领域具有广泛的应用潜力。本综述系统地总结和分析了 BiFC 的技术进展及其在阐明已建立的细胞信号通路中的 PPIs 方面的应用,包括 TOR、PI3K/Akt、Wnt/β-catenin、NF-κB 和 MAPK。此外,还探讨了该技术在揭示植物激素乙烯、生长素、赤霉素和脱落酸信号通路中的 PPIs 方面的应用。将 BiFC 与 CRISPR-Cas9、活细胞成像和超高分辨率显微镜结合使用,将增强我们对细胞信号通路中 PPIs 的理解。