首页> 美国卫生研究院文献>Biochemical Journal >Functional characterization of two human sulphotransferase cDNAs that encode monoamine- and phenol-sulphating forms of phenol sulphotransferase: substrate kinetics, thermal-stability and inhibitor-sensitivity studies.
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Functional characterization of two human sulphotransferase cDNAs that encode monoamine- and phenol-sulphating forms of phenol sulphotransferase: substrate kinetics, thermal-stability and inhibitor-sensitivity studies.

机译:两种人类磺基转移酶cDNA的功能表征,它们编码苯酚磺基转移酶的单胺和苯酚硫酸化形式:底物动力学,热稳定性和抑制剂敏感性研究。

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摘要

The present paper describes the functional characterization of two human aryl sulphotransferase (HAST) cDNAs, HAST1 and HAST3, previously isolated by us from liver and brain, respectively [Zhu, Veronese, Sansom, and McManus (1993) Biochem. Biophys. Res. Commun. 192, 671-676; Zhu, Veronese, Bernard, Sansom and McManus (1993) Biochem. Biophys. Res. Commun. 195, 120-127]. These appear to encode the two major forms of phenol sulphotransferase (PST) characterized in a number of human tissue cytosols, these being the phenolsulphating (P-PST) and monoamine-sulphating (M-PST) forms of phenol sulphotransferase. HAST1 and HAST3 cDNAs were functionally expressed in COS-7 cells and kinetically characterized using the model substrates for P-PST and M-PST, p-nitrophenol and dopamine (3,4-dihydroxyphenethylamine) respectively. COS-expressed HAST1 was shown to be enzymatically active in sulphating p-nitrophenol with high affinity (Km 0.6 microM), whereas dopamine was the preferred substrate for HAST3 (Km 9.7 microM). HAST1 could also sulphate dopamine, as could HAST3 sulphate p-nitrophenol, but the Km for these reactions were at least two orders of magnitude greater than for the preferred substrates. COS-expressed HAST1 and HAST3 displayed inhibition profiles with the ST inhibitor 2,6-dichloro-4-nitrophenol (DCNP), identical with human liver cytosolic P-PST and M-PST activities respectively. Thermal-stability studies with the expressed enzymes showed that HAST1 was considerably more thermostable (TS) than HAST3, which is consistent with P-PST being termed the TS PST and M-PST being termed the thermolabile (TL) PST. Western immunoblot analyses of the expressed PST proteins using an antibody generated to a bacterially expressed rat liver aryl/phenol ST showed that HAST1 and HAST3 migrated as single proteins with different electrophoretic mobilities (32 versus 34 kDa). This is consistent with the differences in electrophoretic mobilities observed for P-PST and M-PST in a variety of tissues reported by other workers. This report on the functional characterization of P-PST and M-PST cDNAs provides important information on the structural as well as functional relationships of human PSTs, which sulphate a vast array of exogenous and endogenous compounds.
机译:本论文描述了两个人类芳基磺基转移酶(HAST)cDNA HAST1和HAST3的功能特性,它们先前由我们分别从肝脏和大脑中分离出来[Zhu,Veronese,Sansom和McManus(1993)Biochem。生物物理学。 Res。公社192,671-676; Zhu,Veronese,Bernard,Sansom和McManus(1993)生物化学。生物物理学。 Res。公社195,120-127]。这些似乎编码了许多人体组织细胞溶胶中表征的两种主要形式的酚磺基转移酶(PST),它们是酚磺基转移酶的酚硫酸盐化(P-PST)和单胺硫酸化(M-PST)形式。 HAST1和HAST3 cDNA在COS-7细胞中功能表达,并分别使用P-PST和M-PST,对硝基苯酚和多巴胺(3,4-二羟基苯乙胺)的模型底物进行动力学表征。 COS表达的HAST1在硫酸化对硝基苯酚中具有很高的亲和力(Km 0.6 microM),具有酶促活性,而多巴胺是HAST3(Km 9.7 microM)的优选底物。 HAST1也可以硫酸多巴胺,HAST3可以硫酸对硝基苯酚,但是这些反应的Km比优选底物至少大两个数量级。 COS表达的HAST1和HAST3对ST抑制剂2,6-二氯-4-硝基苯酚(DCNP)表现出抑制作用,分别与人肝细胞P-PST和M-PST活性相同。用表达的酶进行的热稳定性研究表明,HAST1比HAST3具有更高的热稳定性(TS),这与P-PST被称为TS PST和M-PST被称为不耐热(TL)PST一致。使用针对细菌表达的大鼠肝脏芳基/苯酚ST生成的抗体对表达的PST蛋白进行的Western免疫印迹分析表明,HAST1和HAST3作为具有不同电泳迁移率的单个蛋白迁移(32对34 kDa)。这与其他工人报告的各种组织中P-PST和M-PST的电泳迁移率差异一致。这份有关P-PST和M-PST cDNA的功能表征的报告提供了有关人类PST的结构和功能关系的重要信息,人类PST硫酸化了大量外源和内源性化合物。

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