Herdt Lukas, Schihada Hannes, Kurz Michael, Ernst Sebastian, Eberlein Jean, Kolb Peter, Krasel Cornelius, Bünemann Moritz, Helker Christian S M
Department of Biology, Animal Cell Biology, Marburg University, Marburg, Germany.
Institute of Pharmaceutical Chemistry, Faculty of Pharmacy, Marburg University, Marburg, Germany.
Nat Commun. 2025 Jul 21;16(1):6682. doi: 10.1038/s41467-025-61781-3.
The Apelin receptor (APLNR), a class A G-protein coupled receptor, plays a crucial role during cardiovascular development and tumor angiogenesis. To understand its spatiotemporal activity in health and disease is fundamental for the development of drugs to manipulate its activation state. To obtain this understanding, here we develop a tool box of various APLNR conformation biosensors, based on FRET, BRET and the conformation-sensitive fluorophore circularly permuted GFP (cpGFP), with further focus on its in vivo application. We demonstrate the functionality of our biosensors by pharmacological characterization and signal transduction analysis in vitro. Two APLNR-cpGFP biosensors show superior signal-to-noise ratio and are further analyzed for their in vivo applicability. In zebrafish embryos, APLNR-cpGFP biosensors are able to bind both endogenous ligands, Apelin and Apela, and visualize endogenous Aplnr activity in growing blood vessels. Moreover, we are able to measure an Apelin ligand gradient across cellular distances in vivo. Hence, these APLNR conformation biosensors are powerful tools to resolve the spatiotemporal Apelin signaling activity in health and disease.
阿片肽受体(APLNR)是一种A类G蛋白偶联受体,在心血管发育和肿瘤血管生成过程中发挥着关键作用。了解其在健康和疾病中的时空活性对于开发调控其激活状态的药物至关重要。为了实现这一目标,我们在此开发了一系列基于荧光共振能量转移(FRET)、生物发光共振能量转移(BRET)以及构象敏感荧光团环状排列绿色荧光蛋白(cpGFP)的阿片肽受体构象生物传感器工具箱,并进一步关注其在体内的应用。我们通过体外药理学表征和信号转导分析证明了这些生物传感器的功能。两种阿片肽受体-cpGFP生物传感器显示出优异的信噪比,并对其体内适用性进行了进一步分析。在斑马鱼胚胎中,阿片肽受体-cpGFP生物传感器能够结合内源性配体阿片肽和阿片肽样蛋白,并可视化生长血管中的内源性阿片肽受体活性。此外,我们能够在体内测量细胞间距离上的阿片肽配体梯度。因此,这些阿片肽受体构象生物传感器是解析健康和疾病中阿片肽信号时空活性的有力工具。