首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >A mass spectrometric investigation of the binding of gold antiarthritic agents and the metabolite [Au(CN)(2)](-) stop to human serum albumin
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A mass spectrometric investigation of the binding of gold antiarthritic agents and the metabolite [Au(CN)(2)](-) stop to human serum albumin

机译:质谱分析金抗关节炎药和代谢物[Au(CN)(2)](-)结合至人血清白蛋白的质谱研究

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摘要

Electrospray ionisation (ESI) mass spectrometry was used to examine the reactions of the clinically used antiarthritic agent [Au(S2O3)(2)](3-), and AuPEt3Cl, a derivative of another clinically used agent auranofin, with human serum albumin (HSA) obtained from a human volunteer. Both compounds reacted readily with HSA to form complexes containing one or more covalently attached gold fragments. In the case of AuPEt3Cl, binding was accompanied by the loss of the chloride ligand, while for [Au(S2O3)(2)](3-) the mass spectral data indicated binding of Au(S2O3) groups. Experiments performed using HSA with Cys34 blocked by reaction with iodoacetamide were consistent with reaction of both gold compounds with this amino acid. Separate blocking experiments using diethylpyrocarbonate and AuPEt3Cl also provided evidence for histidine residues acting as lower-affinity binding sites for this gold compound. ESI mass spectra of solutions containing [Au(S2O3)(2)](3-) or [Au(CN)(2)](-), and HSA, provided evidence for the formation of protein complexes in which intact gold molecules were non-covalently bound. In the case of [Au(S2O3)(2)](3-), these non-covalent complexes proved to be transitory in nature. However, for [Au(CN)(2)](-) a non-covalent complex containing a single gold molecule bound to HSA was found to be stable, and constituted the main adduct formed in solutions containing low-to-medium Au-to-HSA ratios. Evidence was also obtained for the formation of a covalent adduct in which a single Au(CN) moiety was bonded to Cys34 of the protein. AuPEt3Cl reacted to a much lower extent with HSA that had Cys34 modified by formation of a disulfide bond to added cysteine, than with unmodified HSA. This suggests that the extent of modi. cation of the protein in vivo may have an important influence on the transport and bioavailability of gold antiarthritic drugs.
机译:电喷雾电离(ESI)质谱用于检查临床使用的抗关节炎药物[Au(S2O3)(2)](3-)和另一个临床使用的药物金诺芬的衍生物AuPEt3Cl与人血清白蛋白的反应( HSA)从人类志愿者那里获得。两种化合物都容易与HSA反应形成含有一个或多个共价连接的金片段的络合物。在AuPEt3Cl的情况下,结合会伴随着氯化物配体的丢失,而对于[Au(S2O3)(2)](3-),质谱数据表明会结合​​Au(S2O3)。使用HSA进行的Cys34通过与碘乙酰胺反应而被封闭的实验与两种金化合物与该氨基酸的反应一致。使用焦碳酸二乙酯和AuPEt3Cl进行的单独封闭实验也为组氨酸残基充当该金化合物的较低亲和力结合位点提供了证据。含有[Au(S2O3)(2)](3-)或[Au(CN)(2)](-)和HSA的溶液的ESI质谱为形成完整金分子的蛋白质复合物提供了证据非共价结合。在[Au(S2O3)(2)](3-)的情况下,这些非共价复合物被证明是暂时的。然而,对于[Au(CN)(2)](-),发现包含一个与HSA结合的单个金分子的非共价配合物是稳定的,并且构成了在包含低至中等Au-的溶液中形成的主要加合物。与HSA的比率。还获得了形成共价加合物的证据,其中单个Au(CN)部分与蛋白质的Cys34键合。与未修饰的HSA相比,AuPEt3Cl与通过在添加的半胱氨酸上形成二硫键而使Cys34修饰的HSA发生的反应要低得多。这表明修改的程度。体内蛋白质的阳离子化对金抗关节炎药物的转运和生物利用度可能具有重要影响。

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