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基于拆卸的荧光纳米探针用于选择性蛋白质检测。

Disassembly-driven turn-on fluorescent nanoprobes for selective protein detection.

机构信息

Department of Synthetic Chemistry and Biological Chemistry, Graduate School of Engineering, Kyoto University, Katsura, Kyoto 615-8510, Japan.

出版信息

J Am Chem Soc. 2010 Jun 2;132(21):7291-3. doi: 10.1021/ja101879g.

Abstract

"Switchable" fluorescent probes, which induce changes in the fluorescence properties (e.g., intensity and/or wavelength) only at the intended target protein, are particularly useful for selective protein detection or imaging. However, the strategy for designing such smart probes remains very limited. We report herein a novel mechanism for generating protein-specific "turn-on" fluorescent probes. Our approach uses an amphiphilic, self-assembling compound consisting of a fluorophore and a protein ligand. In the absence of target protein, the probe forms self-assembled aggregates in aqueous solution and displays almost no fluorescence because of efficient quenching. On the other hand, it emits bright fluorescence in response to the target protein through recognition-induced disassembly of the probe. On the basis of this strategy, we successfully developed three types of fluorescent probes that allow the detection of carbonic anhydrase, avidin, and trypsin via turn-on emission signals. It is anticipated that the present supramolecular approach may facilitate the development of new protein-specific switchable fluorescent probes that are useful for a wide range of applications, such as diagnosis and molecular imaging.

摘要

“可切换”荧光探针仅在预期的靶蛋白存在时才会引起荧光性质(例如强度和/或波长)的变化,因此特别适用于选择性蛋白质检测或成像。然而,设计此类智能探针的策略仍然非常有限。我们在此报告了一种产生针对蛋白质的“开启”型荧光探针的新机制。我们的方法使用由荧光团和蛋白质配体组成的两亲自组装化合物。在没有靶蛋白的情况下,探针在水溶液中形成自组装聚集体,由于有效猝灭,几乎没有荧光。另一方面,它通过探针的识别诱导解组装而发出明亮的荧光响应靶蛋白。基于该策略,我们成功开发了三种荧光探针,可通过开启型发射信号检测碳酸酐酶、亲和素和胰蛋白酶。预计本超分子方法可以促进新型针对蛋白质的可切换荧光探针的发展,这些探针在诊断和分子成像等广泛应用中非常有用。

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