Cruickshank D, Sansom L N, Veronese M E, Mojarrabi B, McManus M E, Zhu X
School of Pharmacy, University of South Australia, Adelaide.
Biochem Biophys Res Commun. 1993 Feb 26;191(1):295-301. doi: 10.1006/bbrc.1993.1216.
A cDNA encoding an isoenzyme of rat liver aryl sulphotransferase was isolated from a rat liver bacteriophage Lambda gt 11 library by the polymerase chain reaction technique. The resulting cDNA was functionally expressed in COS-7 cells and characterised by determining the sulphating capacity of the cells with a range of substrates. The COS-expressed enzyme catalysed the sulphation of both phenol and dopamine with Kms of the same order as those obtained for the high affinity isozyme in rat liver cytosol, while low activity was observed with tyrosine methyl ester. The common food additive vanillin was also a good substrate for sulphate conjugation. The sulphation of vanillin catalysed by the COS-expressed enzyme was consistent with a single enzyme system, in contrast, the kinetics of the reaction catalysed by cytosolic sulphotransferase indicated that vanillin was sulphated by more than one isozyme.
通过聚合酶链反应技术,从大鼠肝脏噬菌体λgt 11文库中分离出编码大鼠肝脏芳基硫酸转移酶同工酶的cDNA。将所得的cDNA在COS - 7细胞中进行功能表达,并通过测定细胞对一系列底物的硫酸化能力来进行表征。COS细胞表达的酶催化苯酚和多巴胺的硫酸化反应,其米氏常数与大鼠肝细胞溶质中高亲和力同工酶的米氏常数处于同一数量级,而对酪氨酸甲酯的活性较低。常见的食品添加剂香草醛也是硫酸结合反应的良好底物。COS细胞表达的酶催化香草醛的硫酸化反应符合单一酶系统,相反,胞质硫酸转移酶催化的反应动力学表明香草醛是由一种以上的同工酶进行硫酸化的。