Reese Abigail E, de Moliner Fabio, Mendive-Tapia Lorena, Benson Sam, Kuru Erkin, Bridge Thomas, Richards Josh, Rittichier Jonathan, Kitamura Takanori, Sachdeva Amit, McSorley Henry J, Vendrell Marc
Centre for Inflammation Research, The University of Edinburgh, EH16 4UU Edinburgh, United Kingdom.
IRR Chemistry Hub, Institute for Regeneration and Repair, The University of Edinburgh, EH16 4UU, Edinburgh, United Kingdom.
ACS Cent Sci. 2023 Dec 20;10(1):143-154. doi: 10.1021/acscentsci.3c01125. eCollection 2024 Jan 24.
The essential functions that cytokine/immune cell interactions play in tissue homeostasis and during disease have prompted the molecular design of targeted fluorophores to monitor their activity in real time. Whereas activatable probes for imaging immune-related enzymes are common, many immunological functions are mediated by binding events between cytokines and their cognate receptors that are hard to monitor by live-cell imaging. A prime example is interleukin-33 (IL-33), a key cytokine in innate and adaptive immunity, whose interaction with the ST2 cell-surface receptor results in downstream signaling and activation of NF-κB and AP-1 pathways. In the present work, we have designed a chemical platform to site-specifically introduce OFF-to-ON BODIPY fluorophores into full cytokine proteins and generate the first nativelike fluorescent analogues of IL-33. Among different incorporation strategies, chemical aminoacylation followed by bioorthogonal derivatization led to the best labeling results. Importantly, the BODIPY-labeled IL-33 derivatives-unlike IL-33-GFP constructs-exhibited ST2-specific binding and downstream bioactivity profiles comparable to those of the wild-type interleukin. Real-time fluorescence microscopy assays under no wash conditions confirmed the internalization of IL-33 through ST2 receptors and its intracellular trafficking through the endosomal pathway. We envision that the modularity and versatility of our BODIPY labeling platform will facilitate the synthesis of minimally tagged fluorogenic cytokines as the next generation of imaging reagents for real-time visualization of signaling events in live immune cells.
细胞因子/免疫细胞相互作用在组织稳态和疾病过程中发挥的重要功能促使人们设计靶向荧光团以实时监测其活性。虽然用于成像免疫相关酶的可激活探针很常见,但许多免疫功能是由细胞因子与其同源受体之间的结合事件介导的,而这很难通过活细胞成像进行监测。一个典型的例子是白细胞介素-33(IL-33),它是先天性和适应性免疫中的关键细胞因子,其与ST2细胞表面受体的相互作用会导致下游信号传导以及NF-κB和AP-1途径的激活。在本研究中,我们设计了一个化学平台,用于将OFF-ON型BODIPY荧光团位点特异性地引入完整的细胞因子蛋白中,并生成首个类似天然的IL-33荧光类似物。在不同的掺入策略中,化学氨基酰化后进行生物正交衍生化产生了最佳的标记结果。重要的是,与IL-33-GFP构建体不同,BODIPY标记的IL-33衍生物表现出与野生型白细胞介素相当的ST2特异性结合和下游生物活性谱。在无洗涤条件下进行的实时荧光显微镜检测证实了IL-33通过ST2受体的内化及其通过内体途径的细胞内运输。我们设想,我们的BODIPY标记平台的模块化和多功能性将有助于合成最小标记的荧光细胞因子,作为实时可视化活免疫细胞中信号事件的下一代成像试剂。