Department of Biochemistry and Organic Chemistry, Uppsala University, Biomedical Center, Box 576, SE-75123 Uppsala, Sweden.
Biochem J. 2010 Oct 1;431(1):159-67. doi: 10.1042/BJ20100839.
A primary role of GSTs (glutathione transferases) is detoxication of electrophilic compounds. In addition to this protective function, hGST (human GST) A3-3, a member of the Alpha class of soluble GSTs, has prominent steroid double-bond isomerase activity. The isomerase reaction is an obligatory step in the biosynthesis of steroid hormones, indicating a special role of hGST A3-3 in steroidogenic tissues. An analogous GST with high steroid isomerase activity has so far not been found in any other biological species. In the present study, we characterized a Sus scrofa (pig) enzyme, pGST A2-2, displaying high steroid isomerase activity. High levels of pGST A2-2 expression were found in ovary, testis and liver. In its functional properties, other than steroid isomerization, pGST A2-2 was most similar to hGST A3-3. The properties of the novel porcine enzyme lend support to the notion that particular GSTs play an important role in steroidogenesis.
GSTs(谷胱甘肽转移酶)的主要作用是解毒亲电化合物。除了这种保护功能外,hGST(人 GST)A3-3,一种可溶性 GSTs Alpha 类的成员,具有显著的甾体双键异构酶活性。异构酶反应是甾体激素生物合成的必需步骤,表明 hGST A3-3 在甾体生成组织中具有特殊作用。迄今为止,在任何其他生物物种中都没有发现具有这种高甾体异构酶活性的类似 GST。在本研究中,我们对一种具有高甾体异构酶活性的 Sus scrofa(猪)酶 pGST A2-2 进行了表征。pGST A2-2 在卵巢、睾丸和肝脏中表达水平较高。在其功能特性方面,除了甾体异构化外,pGST A2-2 与 hGST A3-3 最为相似。这种新型猪酶的特性支持了这样一种观点,即某些 GSTs 在甾体生成中起着重要作用。