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X 射线吸收光谱证明了高亲和力三脚假肽中铜(I)的三角平面硫单配位。

X-ray absorption spectroscopy proves the trigonal-planar sulfur-only coordination of copper(I) with high-affinity tripodal pseudopeptides.

机构信息

Service de Chimie Inorganique et Biologique (UMR_E 3 CEA UJF), Commissariat à l'Energie Atomique et aux Energies Alternatives, INAC, 17 rue des martyrs, 38054 Grenoble Cedex 9, France.

出版信息

Inorg Chem. 2013 Sep 3;52(17):9954-61. doi: 10.1021/ic401206u. Epub 2013 Aug 12.

Abstract

A series of tripodal ligands L derived from nitrilotriacetic acid (NTA) and extended by three converging metal-binding cysteine chains were previously found to bind selectively copper(I) both in vitro and in vivo. The ligands L(1) (ester) and L(2) (amide) were demonstrated to form copper(I) species with very high affinities, close to that reported for the metal-sequestering metallothioneins (MTs; log K(Cu-MT) ≈ 19). Here, an in-depth study by Cu K-edge X-ray absorption spectroscopy (XAS) was performed to completely characterize the copper(I) coordination sphere in the complexes, previously evidenced by other physicochemical analyses. The X-ray absorption near-edge structure (XANES) spectra shed light on the equilibrium between a mononuclear complex and a cluster for both L(1) (ester) and L(2) (amide). The exclusive symmetric CuS3 geometry adopted in the mononuclear complexes (Cu-S ≈ 2.23 Å) was clearly demonstrated by extended X-ray absorption fine structure (EXAFS) analyses. The EXAFS analyses also proved that the clusters are organized on a symmetric CuS3 core (Cu-S ≈ 2.26 Å) and interact with three nearby copper atoms (Cu---Cu ≈ 2.7 Å), consistent with the Cu6S9-type clusters previously characterized by pulsed gradient spin echo NMR spectroscopy. XAS data obtained for other architectures based on the NTA template (L(3) acid, L(4) without a functionalized carbonyl group, etc.) demonstrated the formation of polymetallic species only, which evidence the necessity of the proximal ester or amide group to stabilize the CuS3 mononuclear species. Finally, XAS was demonstrated to be a powerful method to quantify the equilibrium between the two copper(I) environments evidenced with L(1) and L(2) at different copper concentrations and to determine the equilibrium constants between these two complexes.

摘要

先前发现一系列衍生自氮三乙酸(NTA)的三足配体 L,并通过三个收敛的金属结合半胱氨酸链进行扩展,可在体外和体内选择性结合铜(I)。配体 L(1)(酯)和 L(2)(酰胺)被证明与铜(I)形成具有非常高亲和力的物种,接近于金属螯合金属硫蛋白(MTs;log K(Cu-MT) ≈ 19)的报道。在这里,通过 Cu K 边 X 射线吸收光谱(XAS)进行了深入研究,以完全表征以前通过其他物理化学分析证明的复合物中的铜(I)配位球。X 射线吸收近边结构(XANES)光谱阐明了 L(1)(酯)和 L(2)(酰胺)两种情况下单核复合物和簇之间的平衡。单核复合物中采用的独特对称 CuS3 几何结构(Cu-S ≈ 2.23 Å)通过扩展 X 射线吸收精细结构(EXAFS)分析得到了明确证明。EXAFS 分析还证明了簇是在对称的 CuS3 核(Cu-S ≈ 2.26 Å)上组织的,并与三个附近的铜原子相互作用(Cu---Cu ≈ 2.7 Å),与以前通过脉冲梯度自旋回波 NMR 光谱表征的 Cu6S9 型簇一致。基于 NTA 模板的其他结构(L(3)酸、无功能化羰基的 L(4)等)的 XAS 数据表明仅形成多金属物种,这证明了近端酯或酰胺基团稳定 CuS3 单核物种的必要性。最后,证明 XAS 是一种强大的方法,可以在不同铜浓度下量化 L(1)和 L(2) 之间两种铜(I)环境之间的平衡,并确定这两种复合物之间的平衡常数。

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