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一种新的双价荧光融合蛋白,用于在水溶液中差异检测 Cu(II)和 Zn(II)离子。

A new bivalent fluorescent fusion protein for differential Cu(II) and Zn(II) ion detection in aqueous solution.

机构信息

Molecular and Cell Biology, College of Public Health, Medical and Veterinary Sciences, James Cook University, Douglas, QLD, 4811, Australia.

Molecular and Cell Biology, College of Public Health, Medical and Veterinary Sciences, James Cook University, Douglas, QLD, 4811, Australia.

出版信息

Anal Chim Acta. 2020 Mar 8;1101:120-128. doi: 10.1016/j.aca.2019.12.017. Epub 2019 Dec 10.

Abstract

Simple and easy to engineer metal-sensing molecules that are capable of differentiating metal ions and producing metal-specific signals are highly desirable. Metal ions affect the thermal stability of proteins by increasing or decreasing their resistance to unfolding. This work illustrates a new strategy for designing bivalent fluorescent fusion proteins capable of differentiating metal ions in solution through their distinct effects on a protein's thermal stability. A new dual purpose metal sensor was developed consisting of biotin protein ligase (BirA) from B. pseudomallei (Bp) fused to green fluorescent protein (GFP). When coupled with differential scanning fluorimetry of GFP-tagged proteins (DSF-GTP) for signal-transduction detection, Bp BirA-GFP yields distinct protein unfolding signatures with Zn(II) and Cu(II) ions in aqueous solutions. The limit of detection of the system is ∼1 μM for both metal species. The system can be used in a variety of high-throughput assay formats including for the screening of metal-binding proteins and chelators. Bp BirA-GFP has also the additional benefit of being useful in Cu(II) ion field-testing applications through simple visual observation of a temperature-dependent loss of fluorescence. Bp BirA-GFP is the first example of a 2protein-based dual purpose Cu(II) and Zn(II) ion sensor compatible with two different yet complementary signal-transduction detection systems.

摘要

设计能够区分金属离子并产生特定于金属的信号的简单易用的金属感应分子是非常理想的。金属离子通过增加或减少其对展开的抵抗力来影响蛋白质的热稳定性。这项工作说明了一种新的设计策略,用于设计二价荧光融合蛋白,这些蛋白能够通过其对蛋白质热稳定性的不同影响在溶液中区分金属离子。开发了一种新的双功能金属传感器,由来自 B. pseudomallei (Bp) 的生物素蛋白连接酶 (BirA) 融合到绿色荧光蛋白 (GFP) 中。当与 GFP 标记蛋白的差示扫描荧光法 (DSF-GTP) 结合用于信号转导检测时,Bp BirA-GFP 在水溶液中与 Zn(II) 和 Cu(II) 离子产生明显不同的蛋白质展开特征。该系统对两种金属的检测限均约为 1 μM。该系统可用于多种高通量测定格式,包括筛选金属结合蛋白和螯合剂。Bp BirA-GFP 还有一个额外的好处,即通过简单地观察温度依赖性荧光损失,可用于 Cu(II) 离子现场测试应用。Bp BirA-GFP 是首个基于 2 种蛋白质的双功能 Cu(II) 和 Zn(II) 离子传感器的示例,与两种不同但互补的信号转导检测系统兼容。

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