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一种基于罗丹明的钙传感器在活细胞中的蛋白质特异性定位。

Protein-specific localization of a rhodamine-based calcium-sensor in living cells.

作者信息

Best Marcel, Porth Isabel, Hauke Sebastian, Braun Felix, Herten Dirk-Peter, Wombacher Richard

机构信息

Ruprecht-Karls-University Heidelberg, Institute for Pharmacy und Molecular Biotechnology, Im Neuenheimer Feld 364, 69120 Heidelberg, Germany.

出版信息

Org Biomol Chem. 2016 Jun 28;14(24):5606-11. doi: 10.1039/c6ob00365f. Epub 2016 Apr 13.

Abstract

A small synthetic calcium sensor that can be site-specifically coupled to proteins in living cells by utilizing the bio-orthogonal HaloTag labeling strategy is presented. We synthesized an iodo-derivatized BAPTA chelator with a tetramethyl rhodamine fluorophore that allows further modification by Sonogashira cross-coupling. The presented calcium sensitive dye shows a 200-fold increase in fluorescence upon calcium binding. The derivatization with an aliphatic linker bearing a terminal haloalkane-function by Sonogashira cross-coupling allows the localization of the calcium sensor to Halo fusion proteins which we successfully demonstrate in in vitro and in vivo experiments. The herein reported highly sensitive tetramethyl rhodamine based calcium indicator, which can be selectively localized to proteins, is a powerful tool to determine changes in calcium levels inside living cells with spatiotemporal resolution.

摘要

本文介绍了一种小型合成钙传感器,它可以通过生物正交的卤代标签标记策略位点特异性地与活细胞中的蛋白质偶联。我们合成了一种带有四甲基罗丹明荧光团的碘衍生化BAPTA螯合剂,该螯合剂可通过Sonogashira交叉偶联进行进一步修饰。所展示的钙敏感染料在结合钙后荧光增加200倍。通过Sonogashira交叉偶联用带有末端卤代烷功能的脂肪族连接体进行衍生化,可使钙传感器定位于卤代融合蛋白,我们已在体外和体内实验中成功证明了这一点。本文报道的基于四甲基罗丹明的高灵敏度钙指示剂可选择性地定位于蛋白质,是一种以时空分辨率测定活细胞内钙水平变化的有力工具。

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