Qiu Meiying, Wu Deyan, Huang Yi-You, Huang Yue, Zhou Qian, Tian Yijing, Guo Lei, Gao Yuqi, Luo Hai-Bin
School of Pharmaceutical Sciences, Sun Yat-Sen University Guangzhou 510006 China
School of Pharmaceutical Sciences, Hainan University Haikou 570228 China.
RSC Adv. 2021 Oct 4;11(51):31967-31971. doi: 10.1039/d1ra06247f. eCollection 2021 Sep 27.
Small molecule fluorescent probes provide a powerful labelling technology to enhance our understanding of particular proteins. However, the discovery of a proper fluorescent probe for detecting PDE5 is still a challenge due to the highly conservative structure of the catalytic domain in the phosphodiesterase (PDE) families. Herein, we identified probes based on the key amino residues in the ligand binding pocket of PDE5 and catalytic-site-fluorescent probes PCO2001-PCO2003 were well designed and synthesized. Among them, PCO2003 exhibited extraordinary fluorescence properties and the ability to be applied to PDE5 visualization in live cells as well as in pulmonary tissue slices, demonstrating the location and expression level of PDE5 proteins. Overall, the environment-sensitive "turn-on" probe is economical, convenient and rapid for PDE5 imaging, implying that the catalytic-site-fluorescent probe will have a variety of future applications in pathological diagnosis as well as drug screening.
小分子荧光探针提供了一种强大的标记技术,可增进我们对特定蛋白质的了解。然而,由于磷酸二酯酶(PDE)家族催化结构域的高度保守结构,发现一种合适的用于检测PDE5的荧光探针仍然是一项挑战。在此,我们基于PDE5配体结合口袋中的关键氨基酸残基鉴定了探针,并精心设计合成了催化位点荧光探针PCO2001 - PCO2003。其中,PCO2003表现出非凡的荧光特性,并能够应用于活细胞以及肺组织切片中的PDE5可视化,展示了PDE5蛋白的定位和表达水平。总体而言,这种对环境敏感的“开启”探针用于PDE5成像经济、便捷且快速,这意味着催化位点荧光探针在病理诊断以及药物筛选方面将有多种未来应用。