Key Laboratory of Pesticide & Chemical Biology of Ministry of Education, College of Chemistry, Central China Normal University , Wuhan 430079, P.R. China.
Department of Nuclear Medicine, Tongji Hospital, Tongji Medical College, Huazhong University of Science and Technology , Wuhan 430030, P.R. China.
Anal Chem. 2016 Jun 7;88(11):6084-91. doi: 10.1021/acs.analchem.6b01545. Epub 2016 May 17.
Selenocysteine (Sec), encoded as the 21st amino acid, is the predominant chemical form of selenium that is closely related to various human diseases. Thus, it is of high importance to identify novel probes for sensitive and selective recognition of Sec and Sec-containing proteins. Although a few probes have been reported to detect artificially introduced selenols in cells or tissues, none of them has been shown to be sensitive enough to detect endogenous selenols. We report the characterization and application of a new fluorogenic molecular probe for the detection of intracellular selenols. This probe exhibits near-zero background fluorescence but produces remarkable fluorescence enhancement upon reacting with selenols in a fast chemical reaction. It is highly specific and sensitive for intracellular selenium-containing molecules such as Sec and selenoproteins. When combined with flow cytometry, this probe is able to detect endogenous selenols in various human cancer cells. It is also able to image endogenous selenol-containing molecules in zebrafish under a fluorescence microscope. These results demonstrate that this molecular probe can function as a useful molecular tool for intracellular selenol sensing, which is valuable in the clinical diagnosis for human diseases associated with Sec-deficiency or overdose.
硒代半胱氨酸(Sec)作为第 21 种氨基酸,是与各种人类疾病密切相关的主要硒化学形式。因此,识别用于敏感和选择性识别 Sec 和含 Sec 蛋白的新型探针非常重要。尽管已经报道了一些探针可用于检测细胞或组织中人为引入的硒醇,但没有一种探针显示出足够的灵敏度来检测内源性硒醇。我们报告了一种新的荧光分子探针用于检测细胞内硒醇的特性和应用。该探针在与硒醇快速化学反应时表现出接近零的背景荧光,但产生显著的荧光增强。它对细胞内的含硒分子如 Sec 和硒蛋白具有高度的特异性和灵敏度。当与流式细胞术结合使用时,该探针能够检测各种人类癌细胞中的内源性硒醇。它还能够在荧光显微镜下对斑马鱼中的内源性含硒醇分子进行成像。这些结果表明,该分子探针可用作细胞内硒醇传感的有用分子工具,在与 Sec 缺乏或过量相关的人类疾病的临床诊断中具有重要价值。