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用于可视化双分子活性的 mKate3/HaloTag7 (JFX650) 和 CFP/YFP 双荧光(或Förster)共振能量转移对的开发。

Development of mKate3/HaloTag7 (JFX650) and CFP/YFP Dual-Fluorescence (or Förster) Resonance Energy Transfer Pairs for Visualizing Dual-Molecular Activity.

机构信息

Britton Chance Center and MoE Key Laboratory for Biomedical Photonics, School of Engineering Sciences, Wuhan National Laboratory for Optoelectronics-Huazhong University of Science and Technology, Wuhan, Hubei 430074, China.

出版信息

ACS Sens. 2024 Oct 25;9(10):5264-5274. doi: 10.1021/acssensors.4c01444. Epub 2024 Sep 28.

Abstract

Although several imaging strategies for dual fluorescence (or Förster) resonance energy transfer (FRET) biosensors have been reported, their implementation is challenging because of the limited performance of fluorescent proteins and the spectral overlap of FRET biosensors. These processes often require additional data calibration to eliminate artifacts. Many CFP/YFP FRET biosensors have been developed. In this study, we introduced the mKate3/HT7(JFX650) FRET pair, which effectively formed two pairs of FRET pairs for dual-FRET imaging when combined with the CFP/YFP FRET pair. The FRET donor mKate3 exhibited higher brightness than its predecessor mKate. The FRET acceptor, HT7(JFX650), is a HaloTag7 protein covalently conjugated with a far-red JFX650-THL ligand. The pair comprising mKate3 and HT7(JFX650) represents an excellent FRET dyad, exhibiting a high FRET efficiency ratio. To use the FRET pair for dual FRET biosensor imaging, we constructed PKA and K biosensors based on the mKate3/HT7(JFX650) FRET pair. These biosensors can be used along with CFP/YFP biosensors to simultaneously detect the responses of intracellular PKA/Src, PKA/Ca, and K/Ca under different stimuli. The findings revealed that dual FRET biosensors, which are based on the combination of CFP/YFP and mKate3/HT7 (JFX650), exhibit adequate compatibility and can be used to visualize multiple molecular activities in a live cell.

摘要

虽然已经报道了几种用于双荧光(或 Förster)共振能量转移(FRET)生物传感器的成像策略,但由于荧光蛋白的性能有限和 FRET 生物传感器的光谱重叠,它们的实施具有挑战性。这些过程通常需要额外的数据校准来消除伪影。已经开发出许多 CFP/YFP FRET 生物传感器。在这项研究中,我们引入了 mKate3/HT7(JFX650) FRET 对,当与 CFP/YFP FRET 对结合使用时,它有效地形成了用于双-FRET 成像的两对 FRET 对。FRET 供体 mKate3 的亮度高于其前身 mKate。FRET 受体 HT7(JFX650)是一种 HaloTag7 蛋白,与远红 JFX650-THL 配体共价结合。由 mKate3 和 HT7(JFX650)组成的对代表了一个极好的 FRET 偶联物,表现出高的 FRET 效率比。为了将 FRET 对用于双 FRET 生物传感器成像,我们基于 mKate3/HT7(JFX650) FRET 对构建了 PKA 和 K 生物传感器。这些生物传感器可以与 CFP/YFP 生物传感器一起使用,以同时检测不同刺激下细胞内 PKA/Src、PKA/Ca 和 K/Ca 的反应。研究结果表明,基于 CFP/YFP 和 mKate3/HT7 (JFX650) 组合的双 FRET 生物传感器具有足够的兼容性,可以用于可视化活细胞中的多种分子活性。

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