基于亲和力珠的体外金属配体结合试验的发展揭示了富硫醇小肽植物螯合蛋白对镉的亲和力优于谷胱甘肽。

IF 2.9 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Metallomics Pub Date : 2021-12-21 DOI:10.1093/mtomcs/mfab068
Shimpei Uraguchi, Kenichiro Nagai, Fumii Naruse, Yuto Otsuka, Yuka Ohshiro, Ryosuke Nakamura, Yasukazu Takanezawa, Masako Kiyono
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引用次数: 2

摘要

为了更好地了解金属-配体相互作用及其在细胞中的功能,我们开发了一种简单、灵敏、高通量的方法,通过结合配体附着的亲和力珠和电感耦合等离子体光学发射光谱(ICP-OES)来定量生理条件下配体-金属(loid)结合亲和力。以谷胱甘肽(GSH)和两种植物螯合素(PC2和PC3,具有不同数量的游离硫醇的小肽)作为模型配体并附着在亲水性小珠上。该分析的原理类似于生物化学中蛋白质的亲和纯化:金属结合到配体上的珠子和缓冲液中的其余金属通过自旋柱分离,并通过ICP-OES进行定量。利用gsh附着的小珠和各种金属(样蛋白)进行的结合试验表明,金属- gsh相互作用的亲和力不同,与欧文-威廉姆斯系列的顺序和报道的稳定性常数一致。使用PC2或PC3连接珠的结合试验表明,根据PC2和PC3中硫醇的数量,PC2和PC3与Ni(II)、Cu(II)、Zn(II)、Cd(II)和As(III)之间存在正结合。然后,我们对Cd(II)、Mn(II)、Fe(II)、Cu(II)和Zn(II)进行了竞争分析,结果表明PC2与Cd(II)的结合亲和力优于与必需金属的结合亲和力。另一项使用PC2和GSH的竞争实验表明,与GSH和Cd(II)相比,PC2和Cd(II)之间具有强大的结合亲和力。这些结果表明,在体外,PC-Cd复合物的形成占主导地位,支持了pc对体内镉解毒的生理重要性。我们还讨论了该测定法的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of affinity bead-based in vitro metal-ligand binding assay reveals dominant cadmium affinity of thiol-rich small peptides phytochelatins beyond glutathione.

For a better understanding of metal-ligand interaction and its function in cells, we developed an easy, sensitive, and high-throughput method to quantify ligand-metal(loid) binding affinity under physiological conditions by combining ligand-attached affinity beads and inductively coupled plasma-optical emission spectrometry (ICP-OES). Glutathione (GSH) and two phytochelatins (PC2 and PC3, small peptides with different numbers of free thiols) were employed as model ligands and attached to hydrophilic beads. The principle of the assay resembles that of affinity purification of proteins in biochemistry: metals binding to the ligand on the beads and the rest in the buffer are separated by a spin column and quantified by ICP-OES. The binding assay using the GSH-attached beads and various metal(loid)s suggested the different affinity of the metal-GSH interactions, in accordance with the order of the Irving-Williams series and the reported stability constants. The binding assay using PC2 or PC3-attached beads suggested positive binding between PCs and Ni(II), Cu(II), Zn(II), Cd(II), and As(III) in accordance with the number of thiols in PC2 and PC3. We then conducted the competition assay using Cd(II), Mn(II), Fe(II), Cu(II), and Zn(II), and the results suggested a better binding affinity of PC2 with Cd(II) than with the essential metals. Another competition assay using PC2 and GSH suggested a robust binding affinity between PCs and Cd(II) compared to GSH and Cd(II). These results suggested the dominance of PC-Cd complex formation in vitro, supporting the physiological importance of PCs for the detoxification of cadmium in vivo. We also discuss the potential application of the assay.

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来源期刊
Metallomics
Metallomics 生物-生化与分子生物学
CiteScore
7.00
自引率
5.90%
发文量
87
审稿时长
1 months
期刊介绍: Global approaches to metals in the biosciences
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