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一种荧光“变构蝎型”复合物可直观呈现生物识别事件。

A fluorescent "allosteric scorpionand" complex visualizes a biological recognition event.

机构信息

School of Chemistry, The University of Sydney, Sydney, New South Wales 2006, Australia.

出版信息

Chembiochem. 2013 Jan 21;14(2):224-9. doi: 10.1002/cbic.201200637. Epub 2013 Jan 9.

Abstract

We describe a new class of fluorescent reporter and its employment to visualize the biotin/avidin binding interaction. Derivatives of the azamacrocycle cyclam that contain a pendant naphthalimide dye are inherently fluorescent when zinc(II) is coordinated. Introducing a second pendant group--biotin--affords an unsymmetrical bis-triazole-scorpionand ligand that interacts specifically with avidin. This ligand has been assembled by using a one-pot "double-click" strategy and complexed with copper(II) and zinc(II). The zinc(II) complex is fluorescent, and its fluorescence output changes in the presence of avidin. Upon avidin binding, the fluorescence output is diminished by interaction with the protein, at [complex]/[avidin] ratios of up to 4:1. The observed change might arise from a specific quenching effect in the biotin binding pocket or from a binding-induced change in the coordination geometry of the complex.

摘要

我们描述了一类新的荧光报告子及其在可视化生物素/亲和素结合相互作用中的应用。含有一个萘酰亚胺染料悬垂部分的氮杂大环轮烷在与锌(II)配位时具有固有荧光。引入第二个悬垂基团——生物素——可提供不对称双三唑蝎配体,与亲和素特异性相互作用。该配体通过一锅“双击”策略组装,并与铜(II)和锌(II)络合。锌(II)配合物具有荧光,并且在存在亲和素时其荧光输出发生变化。在亲和素结合后,由于与蛋白质的相互作用,荧光输出被减弱,在[配合物]/[亲和素]比高达 4:1 时会发生这种情况。观察到的变化可能源于生物素结合口袋中的特定猝灭效应,或者源于结合诱导的配合物配位几何形状的变化。

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