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一种砷荧光化合物作为一种新型探针来研究砷结合蛋白。

An arsenic fluorescent compound as a novel probe to study arsenic-binding proteins.

机构信息

Laboratorio de Biomembranas, Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes, Bernal, Buenos Aires, Argentina.

出版信息

Protein J. 2012 Dec;31(8):656-66. doi: 10.1007/s10930-012-9441-6.

DOI:10.1007/s10930-012-9441-6
PMID:22936492
Abstract

Arsenic-binding proteins are under continuous research. Their identification and the elucidation of arsenic/protein interaction mechanisms are important because the biological effects of these complexes may be related not only to arsenic but also to the arsenic/protein structure. Although many proteins bearing a CXXC motif have been found to bind arsenic in vivo, new tools are necessary to identify new arsenic targets and allow research on protein/arsenic complexes. In this work, we analyzed the performance of the fluorescent compound APAO-FITC (synthesized from p-aminophenylarsenoxide, APAO, and fluorescein isothiocyanate, FITC) in arsenic/protein binding assays using thioredoxin 1 (Trx) as an arsenic-binding protein model. The Trx-APAO-FITC complex was studied through different spectroscopic techniques involving UV-Vis, fluorescence, atomic absorption, infrared and circular dichroism. Our results show that APAO-FITC binds efficiently and specifically to the Trx binding site, labeling the protein fluorescently, without altering its structure and activity. In summary, we were able to study a protein/arsenic complex model, using APAO-FITC as a labeling probe. The use of APAO-FITC in the identification of different protein and cell targets, as well as in in vivo biodistribution studies, conformational studies of arsenic-binding proteins, and studies for the design of drug delivery systems for arsenic anti-cancer therapies, is highly promising.

摘要

砷结合蛋白是目前研究的热点。鉴定砷结合蛋白并阐明砷/蛋白相互作用机制非常重要,因为这些复合物的生物学效应不仅与砷有关,还与砷/蛋白结构有关。尽管已经发现许多含有CXXC 基序的蛋白质在体内能结合砷,但仍需要新的工具来鉴定新的砷靶标,并允许对蛋白质/砷复合物进行研究。在这项工作中,我们使用硫氧还蛋白 1(Trx)作为砷结合蛋白模型,分析了荧光化合物 APAO-FITC(由对氨基苯胂酸(APAO)和异硫氰酸荧光素(FITC)合成)在砷/蛋白结合测定中的性能。通过涉及紫外可见、荧光、原子吸收、红外和圆二色性的不同光谱技术研究了 Trx-APAO-FITC 复合物。我们的结果表明,APAO-FITC 能够有效地、特异性地结合到 Trx 结合位点,使蛋白质发生荧光标记,而不改变其结构和活性。总之,我们能够使用 APAO-FITC 作为标记探针来研究蛋白质/砷复合物模型。APAO-FITC 有望用于鉴定不同的蛋白质和细胞靶标,以及进行体内生物分布研究、砷结合蛋白构象研究以及设计用于砷抗癌治疗的药物输送系统的研究。

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Recognition of Proteins by Metal Chelation-Based Fluorescent Probes in Cells.基于金属螯合的荧光探针在细胞中对蛋白质的识别
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