Institute of Resource Ecology, Helmholtz-Zentrum Dresden-Rossendorf, Bautzner Landstr. 400, 01328 Dresden, Germany.
Inorg Chem. 2020 Apr 6;59(7):4244-4254. doi: 10.1021/acs.inorgchem.9b02921. Epub 2020 Mar 9.
The interactions between glutathione disulfide, GSSG, the redox partner and dimer of the intracellular detoxification agent glutathione, GSH, and hexavalent uranium, U(VI), were extensively studied by solution NMR (in DO), complemented by time-resolved laser-induced fluorescence and IR spectroscopies. As expected for the hard Lewis acid U(VI), coordination facilitates by the ligands' O-donor carboxyl groups. However, owing to the adjacent cationic α-amino group, the glutamyl-COO reveal monodentate binding, while the COO of the glycyl residues show bidentate coordination. The log value for the reaction UO + HGSSG → UO(HGSSG) (pH 3, 0.1 M NaClO) was determined for the first time, being 4.81 ± 0.08; extrapolation to infinite dilution gave log = 5.24 ± 0.08. U(VI) and GSSG form precipitates in the whole pD range studied (2-8), showing least solubility for 4 < pD < 6.5. Thus, particularly GSSG, hereby representing also other peptides and small proteins, affects the mobility of U(VI), strongly depending on the speciation of either component.
谷胱甘肽二硫化物(GSSG)是细胞内解毒剂谷胱甘肽(GSH)的氧化还原伴侣和二聚体,我们通过溶液 NMR(在 DO 中),结合时间分辨激光诱导荧光和红外光谱技术,对其与六价铀(U(VI))之间的相互作用进行了广泛研究。正如硬路易斯酸 U(VI)所预期的那样,配体的 O-供体羧基基团促进了配位。然而,由于相邻的阳离子 α-氨基,谷氨酰基-COO 呈现单齿配位,而甘氨酰残基的 COO 则呈现双齿配位。我们首次测定了反应 UO + HGSSG → UO(HGSSG)(pH 3,0.1 M NaClO)的 log 值,为 4.81 ± 0.08;外推至无限稀释时,log = 5.24 ± 0.08。在研究的整个 pD 范围内(2-8),U(VI)和 GSSG 都会形成沉淀,表明在 4 < pD < 6.5 时溶解度最低。因此,特别是 GSSG,代表其他肽和小蛋白,会强烈影响 U(VI)的迁移率,这强烈取决于任一组分的形态。