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亲水作用色谱法:评估钍与磷酸化生物模拟肽相互作用的有效工具。

Hydrophilic interaction liquid chromatography: An efficient tool for assessing thorium interaction with phosphorylated biomimetic peptides.

机构信息

Université Paris-Saclay, CEA, Service de Physico Chimie, Gif-sur-Yvette F-91191, France; Sorbonne Université, UPMC, Paris F-75005, France.

Université Paris-Saclay, CEA, Service de Physico Chimie, Gif-sur-Yvette F-91191, France.

出版信息

J Chromatogr A. 2024 Oct 25;1735:465341. doi: 10.1016/j.chroma.2024.465341. Epub 2024 Sep 3.

Abstract

In the field of nuclear toxicology, the knowledge of the interaction of actinides (An) with biomolecules is of prime concern in order to elucidate their toxicity mechanism and to further develop selective decorporating agents. In this work, we demonstrated the great potential of hydrophilic interaction liquid chromatography (HILIC) to separate polar thorium (Th) biomimetic peptide complexes, as a key starting point to tackle these challenges. Th was used as plutonium (Pu) analogue and pS16 and pS1368 as synthetic di- and tetra-phosphorylated peptides capable of mimicking the interaction sites of these An in osteopontin (OPN), a hyperphosphorylated protein. The objective was to determine the relative affinity of pS16 and pS1368 towards Th, and to evaluate the pS1368 selectivity when Th was in competition complexation reaction with UO at physiological pH. To meet these aims, HILIC was simultaneously coupled to electrospray ionization mass spectrometry (ESI-MS) and inductively coupled plasma mass spectrometry (ICP-MS), which allowed to identify online the molecular structure of the separated complexes and quantify them, in a single step. Dedicated HILIC conditions were firstly set up to separate the new dimeric Th(peptide) complexes with good separation resolution (peptide = pS16 or pS1368). By adding pS16 and pS1368 in different proportions relatively to Th, we found that lower or equal proportions of pS16 with respect to pS1368 were not sufficient to displace pS1368 from ThpS1368 and pS16 proportion higher than pS1368 led to the formation of a predominant ternary complex Th(pS16)(pS1368), demonstrating preferential Th binding to the tetra-phosphorylated peptide. Finally, online identification and quantification of the formed complexes when Th and UO were mixed in equimolar ratio relatively to pS1368 showed that in spite of pS1368 has been specifically designed to coordinate UO, pS1368 is also Th-selective and exhibits stronger affinity for this latter than for UO. Hence, the results gathered through this approach highlight the impact of Th coordination chemistry on its interaction with pS1368 and more widely to its affinity for biomolecules.

摘要

在核毒理学领域,了解锕系元素(An)与生物分子的相互作用至关重要,这是为了阐明它们的毒性机制,并进一步开发选择性的去锕系元素剂。在这项工作中,我们展示了亲水相互作用液相色谱(HILIC)分离极性钍(Th)生物模拟肽配合物的巨大潜力,这是解决这些挑战的关键起点。Th 被用作钚(Pu)的类似物,pS16 和 pS1368 被用作能够模拟这些 An 在骨桥蛋白(OPN)中相互作用位点的合成二磷酸化和四磷酸化肽,OPN 是一种高度磷酸化的蛋白质。目的是确定 pS16 和 pS1368 对 Th 的相对亲和力,并评估当 Th 与 UO 在生理 pH 值下进行竞争络合反应时,pS1368 的选择性。为了实现这些目标,HILIC 同时与电喷雾电离质谱(ESI-MS)和电感耦合等离子体质谱(ICP-MS)相结合,这允许在单个步骤中在线识别分离配合物的分子结构并对其进行定量。首先建立了专门的 HILIC 条件,以分离具有良好分离分辨率的新型二聚 Th(肽)配合物(肽=pS16 或 pS1368)。通过向 Th 中添加不同比例的 pS16 和 pS1368,我们发现 pS16 的比例低于或等于 pS1368 不足以将 pS1368 从 ThpS1368 和 pS16 中置换出来,而高于 pS1368 的 pS16 比例则导致主要的三元配合物 Th(pS16)(pS1368)的形成,表明 Th 优先与四磷酸化肽结合。最后,当 Th 和 UO 相对于 pS1368 以等摩尔比混合时,在线识别和定量形成的配合物表明,尽管 pS1368 是专门设计用于与 UO 配位的,但 pS1368 对 Th 也具有选择性,并且对 Th 的亲和力比对 UO 的亲和力更强。因此,通过这种方法获得的结果强调了 Th 配位化学对其与 pS1368 相互作用以及更广泛地对其与生物分子亲和力的影响。

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