Yasuda Tomoko, Yasuda Shin, Williams Frederick E, Liu Ming-Yih, Sakakibara Yoichi, Bhuiyan Shakhawat, Snow Rhodora, Carter Glendora, Liu Ming-Cheh
Department of Pharmacology, College of Pharmacy, The University of Toledo, Toledo, OH 43606, USA.
Mol Cell Endocrinol. 2008 Nov 6;294(1-2):29-36. doi: 10.1016/j.mce.2008.06.014. Epub 2008 Jul 2.
In vertebrates, sulfation as catalyzed by members of the cytosolic sulfotransferase (SULT) family has been suggested to be involved in the homeostasis of steroids. To establish the zebrafish as a model for investigating how sulfation functions to regulate steroid metabolism during the developmental process, we have embarked on the identification of steroid-sulfating SULTs in zebrafish. By searching the GenBank database, we identified two putative cytosolic SULT sequences from zebrafish, designated SULT3 ST1 and ST2. The recombinant proteins of these two zebrafish SULT3 STs were expressed in and purified from BL21 (DE3) cells transformed with the pGEX-2TK expression vector harboring SULT3 ST1 or ST2 cDNA. Upon enzymatic characterization, purified SULT3 ST1 displayed the strongest sulfating activity toward 17beta-estradiol among the endogenous substrates tested, while SULT3 ST2 exhibited substrate specificity toward hydroxysteroids, particularly dehydroepiandrosterone (DHEA). The pH-dependence and kinetic constants of these two enzymes with 17beta-estradiol and DHEA were determined. A developmental expression study revealed distinct patterns of the expression of SULT3 ST1 and ST2 during embryonic development and throughout the larval stage onto maturity. Collectively, these results imply that these two steroid-sulfating SULT3 STs may play differential roles in the metabolism and regulation of steroids during zebrafish development and in adulthood.
在脊椎动物中,胞质硫酸转移酶(SULT)家族成员催化的硫酸化作用被认为参与了类固醇的体内平衡。为了将斑马鱼确立为研究硫酸化在发育过程中如何调节类固醇代谢的模型,我们着手鉴定斑马鱼中类固醇硫酸化的SULT。通过搜索GenBank数据库,我们从斑马鱼中鉴定出两个假定的胞质SULT序列,命名为SULT3 ST1和ST2。这两种斑马鱼SULT3 ST的重组蛋白在用携带SULT3 ST1或ST2 cDNA的pGEX - 2TK表达载体转化的BL21(DE3)细胞中表达并纯化。经酶学表征,纯化后的SULT3 ST1在测试的内源性底物中对17β-雌二醇表现出最强的硫酸化活性,而SULT3 ST2对羟基类固醇,特别是脱氢表雄酮(DHEA)表现出底物特异性。测定了这两种酶对17β-雌二醇和DHEA的pH依赖性和动力学常数。一项发育表达研究揭示了SULT3 ST1和ST2在胚胎发育期间以及整个幼体阶段直至成熟阶段的不同表达模式。总体而言,这些结果表明这两种类固醇硫酸化的SULT3 ST可能在斑马鱼发育和成年期的类固醇代谢和调节中发挥不同作用。