Department of Biomedical Engineering, Dongguk University, Seoul 04620, Republic of Korea.
Department of Chemistry and Chemical Biology, Rutgers University, Piscataway, NJ 08854, USA.
Biosensors (Basel). 2023 Mar 14;13(3):383. doi: 10.3390/bios13030383.
Epidermal growth factor (EGF)-mediated activation of EGF receptors (EGFRs) has become an important target in drug development due to the implication of EGFR-mediated cellular signaling in cancer development. While various in vitro approaches are developed for monitoring EGF-EGFR interactions, they have several limitations. Herein, we describe a live cell-based sensor system that can be used to monitor the interaction of EGF and EGFR as well as the subsequent signaling events. The design of the EGF-detecting sensor cells is based on the split-intein-mediated conditional protein trans-cleavage reaction (CPC). CPC is triggered by the presence of the target (EGF) to activate a signal peptide that translocates the fluorescent cargo to the target cellular location (mitochondria). The developed sensor cell demonstrated excellent sensitivity with a fast response time. It was also successfully used to detect an agonist and antagonist of EGFR (transforming growth factor-α and Cetuximab, respectively), demonstrating excellent specificity and capability of screening the analytes based on their function. The usage of sensor cells was then expanded from merely detecting the presence of target to monitoring the target-mediated signaling cascade, by exploiting previously developed Ca-detecting sensor cells. These sensor cells provide a useful platform for monitoring EGF-EGFR interaction, for screening EGFR effectors, and for studying downstream cellular signaling cascades.
表皮生长因子 (EGF) 介导的表皮生长因子受体 (EGFR) 的激活已成为药物开发的一个重要目标,因为 EGFR 介导的细胞信号在癌症发展中具有重要意义。虽然已经开发出各种用于监测 EGF-EGFR 相互作用的体外方法,但它们存在一些局限性。在此,我们描述了一种基于活细胞的传感器系统,可用于监测 EGF 和 EGFR 的相互作用以及随后的信号事件。EGF 检测传感器细胞的设计基于分裂内含肽介导的条件蛋白转切割反应 (CPC)。CPC 由靶标 (EGF) 的存在触发,以激活信号肽,将荧光货物转运到靶细胞器位置(线粒体)。所开发的传感器细胞具有出色的灵敏度和快速的响应时间。它还成功用于检测 EGFR 的激动剂和拮抗剂(转化生长因子-α和西妥昔单抗),表现出出色的特异性和基于其功能筛选分析物的能力。然后,通过利用先前开发的 Ca 检测传感器细胞,将传感器细胞的用途从仅仅检测靶标的存在扩展到监测靶标介导的信号级联。这些传感器细胞为监测 EGF-EGFR 相互作用、筛选 EGFR 效应物以及研究下游细胞信号级联提供了一个有用的平台。