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利用 X 射线吸收光谱阐明镥腺苷一磷酸和三磷酸配合物的结构。

On the use of X-ray absorption spectroscopy to elucidate the structure of lutetium adenosine mono- and triphosphate complexes.

机构信息

CEA Marcoule, DEN Radiochemistry and Processes Department, Laboratory of Interaction Ligand Actinide, 30207, Bagnols sur Cèze Cedex, France.

出版信息

Anal Bioanal Chem. 2014 Feb;406(4):1049-61. doi: 10.1007/s00216-013-7053-4. Epub 2013 Jun 2.

Abstract

Although the physiological impact of the actinide elements as nuclear toxicants has been widely investigated for half a century, a description of their interactions with biological molecules remains limited. It is however of primary importance to better assess the determinants of actinide speciation in cells and more generally in living organisms to unravel the molecular processes underlying actinide transport and deposition in tissues. The biological pathways of this family of elements in case of accidental contamination or chronic natural exposure (in the case of uranium rich soils for instance) are therefore a crucial issue of public health and of societal impact. Because of the high chemical affinity of those actinide elements for phosphate groups and the ubiquity of such chemical functions in biochemistry, phosphate derivatives are considered as probable targets of these cations. Among them, nucleotides and in particular adenosine mono- (AMP) and triphosphate (ATP) nucleotides occur in more chemical reactions than any other compounds on the earth's surface, except water, and are therefore critical target molecules. In the present study, we are interested in trans-plutonium actinide elements, in particular americium and curium that are more rarely considered in environmental and bioaccumulation studies than early actinides like uranium, neptunium and plutonium. A first step in this strategy is to work with chemical analogues like lanthanides that are not radioactive and therefore allow extended physical chemical characterization to be conducted that are difficult to perform with radioactive materials. We describe herein the interaction of lutetium(III) with adenosine AMP and ATP. With AMP and ATP, insoluble amorphous compounds have been obtained with molar ratios of 1:2 and 1:1, respectively. With an excess of ATP, with 1:2 molar ratio, a soluble complex has been obtained. A combination of spectroscopic techniques (IR, NMR, ESI-MS, EXAFS) together with quantum chemical calculations has been implemented in order to assess the lutetium coordination arrangement for the two nucleotides. In all the complexes described in the article, the lutetium cation is coordinated by the phosphate groups of the nucleotide plus additional putative water molecules with various tridimensional arrangements. With AMP 1:2 and ATP 1:1 solid-state compounds, polynuclear complexes are assumed to be obtained. In contrast, with ATP 1:2 soluble compound, the Lu coordination sphere is saturated by two ATP ligands, and this favors the formation of a mononuclear complex. In order to further interpret the EXAFS data obtained at the Lu LIII edge, model structures have been calculated for the 1:1 and 1:2 ATP complexes. They are discussed and compared to the EXAFS best fit metrical parameters.

摘要

虽然半个世纪以来人们广泛研究了锕系元素作为核毒物的生理影响,但它们与生物分子的相互作用仍描述有限。然而,更好地评估锕系元素在细胞中的形态以及更普遍地在生物体中的形态,对于揭示锕系元素在组织中的运输和沉积的分子过程至关重要。因此,这些元素在意外污染或慢性天然暴露(例如铀丰富土壤的情况下)情况下的生物途径是公共卫生和社会影响的关键问题。由于这些锕系元素与磷酸盐基团具有很高的化学亲和力,并且在生物化学中这种化学功能无处不在,因此磷酸盐衍生物被认为是这些阳离子的可能靶标。在这些物质中,核苷酸,特别是单(AMP)和三磷酸(ATP)核苷酸,比地球表面上除水以外的任何其他化合物都更能发生化学反应,因此是关键的靶标分子。在本研究中,我们对镎系后锕系元素,特别是镅和锔感兴趣,与铀、镎和钚等早期锕系元素相比,它们在环境和生物累积研究中较少被考虑。该策略的第一步是使用化学类似物,如镧系元素,它们是非放射性的,因此可以进行难以用放射性物质进行的扩展物理化学特性研究。本文描述了镥(III)与腺苷 AMP 和 ATP 的相互作用。与 AMP 和 ATP 反应,分别得到摩尔比为 1:2 和 1:1 的不溶性无定形化合物。当存在过量的 ATP 时,以 1:2 的摩尔比获得了可溶复合物。本文采用了光谱技术(IR、NMR、ESI-MS、EXAFS)和量子化学计算相结合的方法,以评估两种核苷酸的镥配位排列。在所描述的所有复合物中,镥阳离子都由核苷酸的磷酸基团以及各种三维排列的额外假定水分子配位。在 AMP 1:2 和 ATP 1:1 固态化合物中,假设得到了多核复合物。相反,在可溶的 ATP 1:2 化合物中,Lu 的配位球被两个 ATP 配体饱和,这有利于单核复合物的形成。为了进一步解释在 Lu LIII 边缘获得的 EXAFS 数据,为 1:1 和 1:2 ATP 复合物计算了模型结构。对它们进行了讨论,并与 EXAFS 最佳拟合度量参数进行了比较。

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