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大鼠肝脏细胞质硫醇转移酶(硫醇:二硫键氧化还原酶)对硫醇和二硫键底物的一般特异性。

General specificity of cytoplasmic thioltransferase (thiol:disulfide oxidoreductase) from rat liver for thiol and disulfide substrates.

作者信息

Axelsson K, Mannervik B

出版信息

Biochim Biophys Acta. 1980 Jun 13;613(2):324-36. doi: 10.1016/0005-2744(80)90087-x.

Abstract

The substrate specificity of thioltransferase (thiol:disulfide oxidoreductase) purified from rat liver cytosol (Axelsson, K., Eriksson, S. and Mannervik, B. (1978) Biochemistry 17, 2978-2984) has been investigated. Various low-molecular-weight thiols were found to be substrates in the scission of sulfur-sulfur bonds in cystamine and glutathione disulfide as well as in mixed disulfides of proteins and glutathione. Protein sulfhydryl groups could also serve as thiol substrates in enzyme-catalyzed thiol-disulfide interchange. Thiol-transferase also catalyzed the reduction of sulfur-sulfur bonds in disulfide-containing proteins by glutathione provided that the proteins had been denatured by proteolysis or urea treatment. It is proposed that thioltransferase may have a role in the intracellular protein degradation by cleavage of disulfide bonds. The finding that thioltransferase catalyzes the reversible formation of mixed disulfides of glutathione and the bulk of proteins in rat liver cytosol is relevant for the catalysis of changes in the 'glutathione status' in the cell. In conclusion, the results of the present investigation show that cytoplasmic thiol-transferase has a very broad substrate specificity, which implies that the enzyme may participate in a multitude of thiol-disulfide interchange reactions.

摘要

对从大鼠肝脏胞质溶胶中纯化得到的硫醇转移酶(硫醇:二硫化物氧化还原酶)(Axelsson, K., Eriksson, S. 和 Mannervik, B. (1978) Biochemistry 17, 2978 - 2984)的底物特异性进行了研究。发现各种低分子量硫醇是胱胺和谷胱甘肽二硫化物中硫 - 硫键断裂以及蛋白质与谷胱甘肽混合二硫化物中的底物。蛋白质巯基在酶催化的硫醇 - 二硫化物交换中也可作为硫醇底物。硫醇转移酶还催化谷胱甘肽还原含二硫键蛋白质中的硫 - 硫键,前提是这些蛋白质已通过蛋白水解或尿素处理变性。有人提出硫醇转移酶可能通过断裂二硫键在细胞内蛋白质降解中发挥作用。硫醇转移酶催化谷胱甘肽与大鼠肝脏胞质溶胶中大量蛋白质形成混合二硫化物这一可逆反应的发现,与细胞内“谷胱甘肽状态”变化的催化作用相关。总之,本研究结果表明细胞质硫醇转移酶具有非常广泛的底物特异性,这意味着该酶可能参与多种硫醇 - 二硫化物交换反应。

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