Kamikawa Takuya, Hashimoto Akari, Yamazaki Nozomi, Adachi Junya, Matsushima Ayami, Kikuchi Kazuya, Hori Yuichiro
Graduate School of Science, Kyushu University 744 Motooka Nishi Fukuoka 819-0395 Japan.
Graduate School of Engineering, Osaka University Suita Osaka 565-0871 Japan
Chem Sci. 2024 May 1;15(21):8097-8105. doi: 10.1039/d3sc06957e. eCollection 2024 May 29.
Specific labeling of proteins using membrane-permeable fluorescent probes is a powerful technique for bioimaging. Cationic fluorescent dyes with high fluorescence quantum yield, photostability, and water solubility provide highly useful scaffolds for protein-labeling probes. However, cationic probes generally show undesired accumulation in organelles, which causes a false-positive signal in localization analysis. Herein, we report a design strategy for probes that suppress undesired organelle accumulation using a bioisostere for intracellular protein imaging in living cells. Our design allows the protein labeling probes to possess both membrane permeability and suppress non-specific accumulation and has been shown to use several protein labeling systems, such as PYP-tag and Halo tag systems. We further developed a fluorogenic PYP-tag labeling probe for intracellular proteins and used it to visualize multiple localizations of target proteins in the intracellular system. Our strategy offers a versatile design for undesired accumulation-suppressed probes with cationic dye scaffolds and provides a valuable tool for intracellular protein imaging.
使用可穿透细胞膜的荧光探针特异性标记蛋白质是一种用于生物成像的强大技术。具有高荧光量子产率、光稳定性和水溶性的阳离子荧光染料为蛋白质标记探针提供了非常有用的支架。然而,阳离子探针通常会在细胞器中出现不期望的积累,这在定位分析中会导致假阳性信号。在此,我们报告了一种探针的设计策略,该策略使用生物电子等排体来抑制不期望的细胞器积累,用于活细胞中的细胞内蛋白质成像。我们的设计使蛋白质标记探针既具有膜通透性,又能抑制非特异性积累,并且已被证明可用于多种蛋白质标记系统,如PYP标签和Halo标签系统。我们进一步开发了一种用于细胞内蛋白质的荧光PYP标签标记探针,并用于可视化细胞内系统中靶蛋白的多个定位。我们的策略为具有阳离子染料支架的抑制不期望积累的探针提供了一种通用设计,并为细胞内蛋白质成像提供了一个有价值的工具。