Sharma Nirmali, Jung Minkyo, Mishra Pratyush Kumar, Mun Ji Young, Rhee Hyun-Woo
Department of Chemistry, Seoul National University, Seoul 08826, Korea; Department of Chemistry, Ulsan National Institute of Science and Technology (UNIST), Ulsan 44919, Korea.
Neural Circuits Research Group, Korea Brain Research Institute, Daegu 41062, Republic of Korea.
Cell Chem Biol. 2024 Mar 8. doi: 10.1016/j.chembiol.2024.02.007.
Fluorescent tagging of biomolecules enables their sensitive detection during separation and determining their subcellular location. In this context, peroxidase-based reactions are actively utilized for signal amplification. To harness this potential, we developed a genetically encodable enzymatic fluorescence signal amplification method using APEX (FLEX). We synthesized a fluorescent probe, Jenfluor triazole (JFT1), which effectively amplifies and restricts fluorescence signals under fixed conditions, enabling fluorescence-based detection of subcellularly localized electron-rich metabolites. Moreover, JFT1 exhibited stable fluorescence signals even under osmium-treated and polymer-embedded conditions, which supported findings from correlative light and electron microscopy (CLEM) using APEX. Using various APEX-conjugated proteins of interest (POIs) targeted to different organelles, we successfully visualized their localization through FLEX imaging while effectively preserving organelle ultrastructures. FLEX provides insights into dynamic lysosome-mitochondria interactions upon exposure to chemical stressors. Overall, FLEX holds significant promise as a sensitive and versatile system for fluorescently detecting APEX2-POIs in multiscale biological samples.
生物分子的荧光标记能够在分离过程中对其进行灵敏检测,并确定它们在亚细胞中的位置。在此背景下,基于过氧化物酶的反应被积极用于信号放大。为了利用这一潜力,我们开发了一种使用APEX的基因编码酶促荧光信号放大方法(FLEX)。我们合成了一种荧光探针,詹氟三唑(JFT1),它能在固定条件下有效放大并限制荧光信号,实现基于荧光的亚细胞定位富电子代谢物的检测。此外,即使在经锇处理和聚合物包埋的条件下,JFT1仍表现出稳定的荧光信号,这支持了使用APEX的相关光电子显微镜(CLEM)的研究结果。通过使用靶向不同细胞器的各种与APEX偶联的目标蛋白(POI),我们通过FLEX成像成功可视化了它们的定位,同时有效地保留了细胞器超微结构。FLEX为暴露于化学应激源时动态的溶酶体 - 线粒体相互作用提供了见解。总体而言,FLEX作为一种用于在多尺度生物样品中荧光检测APEX2 - POI的灵敏且通用的系统具有巨大潜力。