Rao Desaboini Nageswara, Ji Xincai, Miller Stephen C
Department of Biochemistry and Molecular Biotechnology, University of Massachusetts Chan Medical School Worcester Massachusetts 01605 USA
Chem Sci. 2022 May 2;13(20):6081-6088. doi: 10.1039/d2sc01821g. eCollection 2022 May 25.
Fluorescent dyes such as rhodamines are widely used to assay the activity and image the location of otherwise invisible molecules. Si-rhodamines, in which the bridging oxygen of rhodamines is replaced with a dimethyl silyl group, are increasingly the dye scaffold of choice for biological applications, as fluorescence is shifted into the near-infrared while maintaining high brightness. Despite intense interest in Si-rhodamines, there has been no exploration of the scope of silicon functionalization in these dyes, a potential site of modification that does not exist in conventional rhodamines. Here we report a broad range of silyl modifications that enable brighter dyes, further red-shifting, new ways to modulate fluorescence, and the introduction of handles for dye attachment, including fluorogenic labeling agents for nuclear DNA, SNAP-tag and HaloTag labeling. Modifications to the bridging silicon are therefore of broad utility to improve and expand the applications of all Si-dyes.
若丹明等荧光染料被广泛用于检测活性以及对原本不可见分子的位置进行成像。硅若丹明是将若丹明的桥连氧原子替换为二甲基硅烷基团,由于其荧光转移至近红外区域且保持高亮度,越来越成为生物应用中染料支架的首选。尽管对硅若丹明有着浓厚兴趣,但尚未对这些染料中硅官能化的范围进行探索,而这是传统若丹明不存在的潜在修饰位点。在此,我们报告了一系列广泛的硅烷基修饰,这些修饰能够实现更亮的染料、进一步红移、调节荧光的新方法以及引入用于染料连接的手柄,包括用于核DNA的荧光标记剂、SNAP标签和HaloTag标记。因此,对桥连硅的修饰对于改进和扩展所有硅染料的应用具有广泛的用途。