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了解铍病的定位:铍与碳水化合物及相关仿生配体的相互作用。

Understanding the Localization of Berylliosis: Interaction of Be with Carbohydrates and Related Biomimetic Ligands.

机构信息

Anorganische Chemie, Nachwuchsgruppe Berylliumchemie, Fachbereich Chemie, Philipps-Universität Marburg, Hans-Meerwein-Straße 4, 35032, Marburg, Germany.

出版信息

Chemistry. 2019 Dec 18;25(71):16257-16269. doi: 10.1002/chem.201903439. Epub 2019 Nov 8.

Abstract

The interplay of metal ions with polysaccharides is important for the immune recognition in the lung. Due to the localization of beryllium associated diseases to the lung, it is likely that beryllium carbohydrate complexes play a vital role for the development of berylliosis. Herein, we present a detailed study on the interaction of Be ions with fructose and glucose as well as simpler biomimetic ligands, which emulate binding motives of saccharides. Through NMR and IR spectroscopy as well as single-crystal X-ray diffraction, complemented by competition reactions we were able to determine a distinctive trend in the binding affinity of these ligands. This suggests that under physiological conditions beryllium ions are only bound irreversibly in glycoproteins or polysaccharides if a quasi ideal tetrahedral environment and κ -coordination is provided by the respective biomolecule. Furthermore, Lewis acid induced conversions of the ligands and an extreme increase in the Brønstedt acidity of the present OH-groups imply that upon enclosure of Be , alterations may be induced by the metal ion in glycoproteins or polysaccharides. In addition the frequent formation of Be-O-heterocycles indicates that multinuclear beryllium compounds might be the actual trigger of berylliosis. This investigation on beryllium coordination chemistry was supplemented by binding studies of selected biomimetic ligands with Al , Zn , Mg , and Li , which revealed that none of these beryllium related ions was tetrahedrally coordinated under the give conditions. Therefore, studies on the metabolization of beryllium compounds cannot be performed with other hard cations as a substitute for the hazardous Be .

摘要

金属离子与多糖的相互作用对于肺部的免疫识别很重要。由于铍相关疾病定位于肺部,因此铍碳水化合物复合物很可能在铍病的发展中起着至关重要的作用。在此,我们详细研究了 Be 离子与果糖和葡萄糖以及更简单的仿生配体的相互作用,这些配体模拟了糖的结合动机。通过 NMR 和 IR 光谱以及单晶 X 射线衍射,并辅以竞争反应,我们能够确定这些配体结合亲和力的独特趋势。这表明,在生理条件下,只有在相应生物分子提供准四面体环境和 κ 配位时,铍离子才会不可逆地与糖蛋白或多糖结合。此外,路易斯酸诱导配体的转化和 present OH 基团的 Brønsted 酸度的极端增加表明,在铍被封闭后,金属离子可能会在糖蛋白或多糖中引起改变。此外,Be-O-杂环的频繁形成表明多核铍化合物可能是铍病的实际触发因素。这项关于铍配位化学的研究还补充了选定仿生配体与 Al、Zn、Mg 和 Li 的结合研究,结果表明在给定条件下,这些铍相关离子均未采用四面体型配位。因此,不能用其他硬阳离子代替危险的 Be 来进行铍化合物的代谢研究。

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