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谷胱甘肽对砷酸盐和二甲基胂酸的还原与结合:一项磁共振研究

Reduction and binding of arsenate and dimethylarsinate by glutathione: a magnetic resonance study.

作者信息

Delnomdedieu M, Basti M M, Otvos J D, Thomas D J

机构信息

Center for Environmental Medicine, University of North Carolina, Chapel Hill 27711.

出版信息

Chem Biol Interact. 1994 Feb;90(2):139-55. doi: 10.1016/0009-2797(94)90099-x.

Abstract

By observing the chemical shifts of the proton and carbon-13 nuclei of reduced glutathione, the interactions of arsenate, arsenite and dimethylarsinate with this tripeptide have been characterized. These spectral studies show the reduction and complexation of arsenic to be a two-step process. Initially, the oxidation of 2 mol of glutathione reduces arsenate to arsenite. Then, 3 mol of glutathione are consumed in the formation of a glutathione-arsenite complex. Similar experiments with arsenite identified a (glutathione)3-arsenite complex; however, no oxidized glutathione was detected. The arsenite binding site in the glutathione-arsenite complex is the cysteinyl sulfhydryl. The glutathione-arsenite complex is stable over the pH range from 1.5 to 7.0-7.5. At higher pH, dissociation occurs releasing reduced glutathione. For a glutathione to dimethylarsinate ratio of 3, oxidized glutathione is also coupled with a reduction to trivalent dimethylarsinous acid, prior to the formation of a 1:1 glutathione-dimethylarsinite complex. The role of reduced glutathione in the metabolism of arsenic is consistent with the previously described effects of this agent on the organismic toxicity of arsenic.

摘要

通过观察还原型谷胱甘肽中质子和碳 - 13 原子核的化学位移,已对砷酸盐、亚砷酸盐和二甲基砷酸盐与这种三肽的相互作用进行了表征。这些光谱研究表明,砷的还原和络合是一个两步过程。最初,2 摩尔谷胱甘肽的氧化将砷酸盐还原为亚砷酸盐。然后,3 摩尔谷胱甘肽在形成谷胱甘肽 - 亚砷酸盐络合物的过程中被消耗。用亚砷酸盐进行的类似实验鉴定出一种(谷胱甘肽)3 - 亚砷酸盐络合物;然而,未检测到氧化型谷胱甘肽。谷胱甘肽 - 亚砷酸盐络合物中的亚砷酸盐结合位点是半胱氨酰巯基。谷胱甘肽 - 亚砷酸盐络合物在 pH 值为 1.5 至 7.0 - 7.5 的范围内是稳定的。在较高的 pH 值下,会发生解离,释放出还原型谷胱甘肽。当谷胱甘肽与二甲基砷酸盐的比例为 3 时,在形成 1:1 的谷胱甘肽 - 二甲基亚砷酸盐络合物之前,氧化型谷胱甘肽也会伴随着还原为三价二甲基亚砷酸。还原型谷胱甘肽在砷代谢中的作用与该试剂先前描述的对砷的机体毒性的影响一致。

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