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用过氧化氢和环状亚硒酸酯催化剂将二硫化物氧化为亚磺酸硫醇酯。

Oxidation of Disulfides to Thiolsulfinates with Hydrogen Peroxide and a Cyclic Seleninate Ester Catalyst.

作者信息

McNeil Nicole M R, McDonnell Ciara, Hambrook Miranda, Back Thomas G

机构信息

Department of Chemistry, University of Calgary, Calgary, AB T2N 1N4, Canada.

出版信息

Molecules. 2015 Jun 11;20(6):10748-62. doi: 10.3390/molecules200610748.

Abstract

Cyclic seleninate esters function as mimetics of the antioxidant selenoenzyme glutathione peroxidase. They catalyze the reduction of harmful peroxides with thiols, which are converted to disulfides in the process. The possibility that the seleninate esters could also catalyze the further oxidation of disulfides to thiolsulfinates and other overoxidation products under these conditions was investigated. This has ramifications in potential medicinal applications of seleninate esters because of the possibility of catalyzing the unwanted oxidation of disulfide-containing spectator peptides and proteins. A variety of aryl and alkyl disulfides underwent facile oxidation with hydrogen peroxide in the presence of catalytic benzo-1,2-oxaselenolane Se-oxide affording the corresponding thiolsulfinates as the principal products. Unsymmetrical disulfides typically afforded mixtures of regioisomers. Lipoic acid and N,N'-dibenzoylcystine dimethyl ester were oxidized readily under similar conditions. Although isolated yields of the product thiolsulfinates were generally modest, these experiments demonstrate that the method nevertheless has preparative value because of its mild conditions. The results also confirm the possibility that cyclic seleninate esters could catalyze the further undesired oxidation of disulfides in vivo.

摘要

环状亚硒酸酯可作为抗氧化硒酶谷胱甘肽过氧化物酶的模拟物。它们催化用硫醇还原有害的过氧化物,在此过程中硫醇被转化为二硫化物。研究了在这些条件下亚硒酸酯是否也能催化二硫化物进一步氧化为亚磺酸酯和其他过氧化产物的可能性。这对亚硒酸酯的潜在医学应用有影响,因为可能会催化含二硫键的旁观肽和蛋白质发生不必要的氧化。在催化苯并 -1,2- 氧杂硒杂环戊烷硒氧化物存在下,多种芳基和烷基二硫化物与过氧化氢发生容易的氧化反应,生成相应的亚磺酸酯作为主要产物。不对称二硫化物通常得到区域异构体的混合物。硫辛酸和 N,N'- 二苯甲酰胱氨酸二甲酯在类似条件下很容易被氧化。尽管产物亚磺酸酯的分离产率通常不高,但这些实验表明该方法因其温和的条件仍具有制备价值。结果还证实了环状亚硒酸酯在体内可能催化二硫化物进一步发生不期望的氧化的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b938/6272456/e2b45426b0bb/molecules-20-10748-g001.jpg

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