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首页> 外文期刊>The biochemical journal >Partial purification and kinetics of oestriol 16α-glucuronyltransferase from the cytosol fraction of human liver
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Partial purification and kinetics of oestriol 16α-glucuronyltransferase from the cytosol fraction of human liver

机译:从人肝的细胞溶质中部分纯化雌三醇16α-葡萄糖醛酸转移酶

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pAn enzyme that conjugates the 16α-hydroxyl group of oestriol with glucuronic acid was found in the cytosol fraction of human liver. The enzymic activity could not be sedimented when the cytosol fraction was centrifuged at 158000ig/isubav./sub for 120min. The oestriol 16α-glucuronyltransferase was purified 100-fold by 0–30% saturation of the cytosol fraction with ammonium sulphate followed by filtration of the precipitate through Sephadex G-200. The activity was eluted at the void volume. The product of the reaction, oestriol 16α-monoglucuronide, was identified by paper chromatography and by crystallization of radioactive product to constant specific radioactivity. The optimum temperature was 37°C, and the activation energy was calculated to be 11.1kcal/mol. The apparent Michaelis–Menten constants for oestriol and UDP-glucuronic acid were 13.3 and 100μm respectively. Cusup2+/sup, Znsup2+/sup and Hgsup2+/sup inhibited, whereas Mgsup2+/sup, Mnsup2+/sup and Fesup2+/sup stimulated the enzyme. Substrate-specificity studies indicated that the amount of oestradiol-17β, oestradiol-17α and oestrone conjugated was not more than about 5% of that found for oestriol. Oestriol 16α-monoglucuronide, a product of the reaction, did not inhibit the 16α-oestriol glucuronyltransferase; in contrast, UDP, another product of the reaction, inhibited the enzyme competitively with respect to UDP-glucuronic acid as the substrate, and non-competitively with respect to oestriol as the substrate. ATP and UDP-iN/i-acetylglucosamine did not affect the oestriol 16α-glucuronyltransferase. 17-Epioestriol acted as a competitive inhibitor and 16-epioestriol as a non-competitive inhibitor of the glucuronidation of oestriol. 5α-Pregnane-3α,20α-diol also inhibited the enzyme non-competitively. It is most likely that the oestriol 16α-glucuronyltransferase described here is bound to the membranes of the endoplasmic reticulum./p
机译:在人肝的细胞溶质中发现了一种将雌三醇的16α-羟基与葡萄糖醛酸缀合的酶。在158000 g av。离心120min时,无法溶解酶活性。通过用硫酸铵使细胞溶质级分饱和度为0–30%,将Oestriol16α-葡萄糖醛酸转移酶纯化100倍,然后通过Sephadex G-200过滤沉淀。活性以空隙体积洗脱。通过纸色谱法和通过将放射性产物结晶至恒定比放射性来鉴定反应产物雌三醇16α-单葡糖醛酸苷。最佳温度为37°C,计算出的活化能为11.1kcal / mol。雌三醇和UDP-葡萄糖醛酸的表观Michaelis-Menten常数分别为13.3和100μm。 Cu 2 + ,Zn 2 + 和Hg 2 + 被抑制,而Mg 2 + ,Mn 2 + 和Fe 2 + 刺激了该酶。底物特异性研究表明,共轭的雌二醇17β,雌二醇17α和雌酮的量不超过雌三醇的约5%。该反应的产物Oestriol16α-单葡糖醛酸不抑制16α-Oestriol葡糖醛酸转移酶。相反,该反应的另一产物UDP相对于作为底物的UDP-葡萄糖醛酸竞争性地抑制了酶,而相对于作为底物的雌三醇非竞争性地抑制了酶。 ATP和UDP-Ni-乙酰氨基葡萄糖不影响雌三醇16α-葡萄糖醛酸转移酶。 17-Epiioestriol充当竞争性抑制剂,而16-epioestriol充当非竞争性抑制雌三醇的葡萄糖醛酸化作用。 5α-孕烷-3α,20α-二醇也非竞争性地抑制了该酶。本文所述的雌三醇16α-葡萄糖醛酸转移酶很可能与内质网膜结合。

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