Liu M C, Yu S, Suiko M
Department of Chemistry, University of Oklahoma, Norman 73019.
Biochem Int. 1990 Aug;21(5):815-21.
The spent media of HepG2 human hepatoma cells and 3Y1 rat embryo fibroblasts labeled with [35S]sulfate, upon ultrafiltration, were analyzed by a two-dimensional thin-layer separation procedure. Autoradiographs of the cellulose thin-layer plate revealed the presence of tyramine-O-[35S]sulfate in addition to tyrosine-O-[35S]sulfate in spent medium from human hepatoma cells. In contrast, only tyrosine-O-[35S]sulfate was observed in spent medium of 3Y1 rat fibroblasts. Using adenosine, 3'-phosphate, 5'-phospho[35S]sulfate as the sulfate donor, sulfotransferase(s) present in HepG2 cell homogenate catalyzed the sulfation of tyramine to tyramine-O-[35S]sulfate, but not the sulfation of tyrosine to tyrosine-O-[35S]sulfate. Endogenous aromatic amino acid decarboxylase present in HepG2 homogenate was shown to catalyze the decarboxylation of [3H]tyrosine to form [3H]tyramine while attempts to use it for the decarboxylation of tyrosine-O-sulfate to form tyramine-O-sulfate were unsuccessful. These results suggest that tyramine-O-sulfate may be derived from the de novo sulfation of tyramine, instead of the decarboxylation of tyrosine-O-sulfate.
用[35S]硫酸盐标记的人肝癌细胞HepG2和大鼠胚胎成纤维细胞3Y1的用过的培养基,经超滤后,采用二维薄层层析分离法进行分析。纤维素薄板的放射自显影片显示,人肝癌细胞用过的培养基中除了酪氨酸-O-[35S]硫酸盐外,还存在酪胺-O-[35S]硫酸盐。相比之下,在3Y1大鼠成纤维细胞用过的培养基中只观察到酪氨酸-O-[35S]硫酸盐。以腺苷3'-磷酸5'-磷酸[35S]硫酸盐作为硫酸盐供体,HepG2细胞匀浆中存在的磺基转移酶催化酪胺硫酸化为酪胺-O-[35S]硫酸盐,但不催化酪氨酸硫酸化为酪氨酸-O-[35S]硫酸盐。HepG2匀浆中存在的内源性芳香族氨基酸脱羧酶被证明能催化[3H]酪氨酸脱羧形成[3H]酪胺,而试图用它将酪氨酸-O-硫酸盐脱羧形成酪胺-O-硫酸盐未成功。这些结果表明,酪胺-O-硫酸盐可能来源于酪胺的从头硫酸化,而不是酪氨酸-O-硫酸盐的脱羧。