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Speciation of Aluminum(III) Complexes with Oxidized Glutathione in Acidic Aqueous Solutions

机译:酸性水溶液中铝(III)与氧化型谷胱甘肽配合物的形态

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摘要

The structural speciation aspects, including the binding sites, species, complexation abilities and effects of the oxidized glutathione (GSSG) with aluminum(III) in aqueous solutions, have been studied by means of many analytical techniques: pH-potentiometry (25°C, 0.1 M KCl and 37°C, 0.15 M NaCl medium) was used to characterize the stoichiometry and stability of the species formed in the interactions of the Al(III) ion and the peptide GSSG, while multinuclear (1H, 13C, 27Al) nuclear magnetic resonance (NMR) and electrospray mass spectroscopy (ESI-MS) were applied to characterize the binding sites and species of the metal ion in the complexes. Two-dimensional (1H, 1H-NOESY) was also employed to reveal the difference in the conformational behavior of the peptide and its complexes. The following results were obtained: (1) Aluminum(III) can coordinate with the important biomolecule GSSG through the following binding sites: glycyl and glutamyl carboxyl groups to form various mononuclear 1:1 (AlLH4, AlLH3, AlLH2, AlLH, AlL, AlLH-1, AlLH-2) and several binuclear 2:1 (Al2LH4, Al2LH2, Al2L) species (where H6L2+ denotes the totally protonated oxidized glutathione) in acidic aqueous solutions. (2) It indicates that the COO- groups at low level of preorganization in such small peptide are not sufficient to keep the Al(III) ion in solution and to prevent the precipitation of Al(OH)3 in the physiological pH range. (3) It also suggests that the occurrence of an Al-linked complexation, the conformation of the peptide GSSG in aqueous solutions appeared to change a little, relative to the initial structure.
机译:已经通过多种分析技术研究了结构形态方面,包括结合位点,种类,络合能力以及氧化型谷胱甘肽(GSSG)与铝(III)在水溶液中的作用,已通过多种分析技术进行了研究:pH电位法(25°C,使用0.1 M KCl和37°C,0.15 M NaCl介质)表征由Al(III)离子与肽GSSG相互作用而形成的物质的化学计量和稳定性,而多核(1H,13C,27Al)核磁共振(NMR)和电喷雾质谱(ESI-MS)用于表征配合物中金属离子的结合位点和种类。还使用二维(1H,1H-NOESY)来揭示肽及其复合物的构象行为的差异。获得了以下结果:(1)铝(III)可通过以下结合位点与重要的生物分子GSSG配位:糖基和谷氨酰基羧基形成各种单核1:1(AlLH4,AlLH3,AlLH2,AlLH,AlL,AlLH -1,AlLH-2)和几种双核2:1(Al2LH4,Al2LH2,Al2L)物种(其中H6L2 +表示完全质子化的氧化型谷胱甘肽)。 (2)表明,在这种小的肽中处于低预组织水平的COO-基团不足以将Al(III)离子保持在溶液中并防止在生理pH范围内沉淀Al(OH)3。 (3)这也表明,Al-连接的络合物的出现,水溶液中肽GSSG的构象似乎相对于初始结构有少许变化。

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