首页> 美国卫生研究院文献>Biochemical Journal >The role of sterol carrier protein2 and other hepatic lipid-binding proteins in bile-acid biosynthesis.
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The role of sterol carrier protein2 and other hepatic lipid-binding proteins in bile-acid biosynthesis.

机译:固醇载体蛋白2和其他肝脂质结合蛋白在胆汁酸生物合成中的作用。

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摘要

The ability of different lipid-binding proteins in liver cytosol to affect enzyme activities in bile-acid biosynthesis was studied in whole microsomes (microsomal fractions) and mitochondria and in purified enzyme systems. Sterol carrier protein2 stimulated the 7 alpha-hydroxylation of cholesterol and the 12 alpha-hydroxylation of 5 beta-cholestane-3 alpha, 7 alpha-diol in microsomes and the 26-hydroxylation of cholesterol in mitochondria 2-3-fold. It also stimulated the oxidation of 5-cholestene-3 beta, 7 alpha-diol into 7 alpha-hydroxy-4-cholesten-3-one in microsomes. The stimulatory effect of sterol carrier protein2 was much less with purified cholesterol 7 alpha- and 26-hydroxylase systems than with microsomes and mitochondria. No stimulatory effect of sterol carrier protein2 was observed with purified 12 alpha-hydroxylase and 3 beta-hydroxy-delta 5-C27-steroid oxidoreductase. Sterol carrier protein (fatty-acid-binding protein), 'DEAE-peak I protein' [Dempsey, McCoy, Baker, Dimitriadou-Vafiadou, Lorsbach & Howards (1981) J. Biol. Chem. 256, 1867-1873], ligandin (glutathione transferase B) and serum albumin had no marked stimulatory effects in either crude or in purified systems. The results suggest that sterol carrier protein2 facilitates the introduction of the less-polar substrates in bile-acid biosynthesis to the membrane-bound enzymes in crude systems in vitro. The broad substrate specificity appears, however, not to be consistent with a specific regulatory function for sterol carrier protein2 in bile-acid biosynthesis.
机译:在整个微粒体(微粒体级分)和线粒体中以及在纯化的酶系统中研究了肝细胞溶胶中不同脂质结合蛋白影响胆汁酸生物合成中酶活性的能力。甾醇载体蛋白2刺激胆固醇的7α-羟基化和微粒体中5β-胆甾烷3α,7α-二醇的12α-羟基化和线粒体中胆固醇的26-羟基化2-3-倍。它还刺激微粒体中的5-胆甾烯-3β,7α-二醇氧化为7α-羟基-4-胆甾烯-3-。纯化的胆固醇7α-羟化酶和26-羟化酶系统对固醇载体蛋白2的刺激作用远小于微粒体和线粒体。用纯化的12α-羟化酶和3β-羟基-δ5-C27-类固醇氧化还原酶未观察到固醇载体蛋白2的刺激作用。甾醇载体蛋白(脂肪酸结合蛋白),“ DEAE-peak I蛋白” [Dempsey,McCoy,Baker,Dimitriadou-Vafiadou,Lorsbach&Howards(1981)J.化学[256,1867-1873],配体蛋白(谷胱甘肽转移酶B)和血清白蛋白在粗制或纯化系统中均没有明显的刺激作用。结果表明,在体外,固醇载体蛋白2有助于胆汁酸生物合成中极性较小的底物引入膜结合酶。然而,宽泛的底物特异性似乎与胆汁酸生物合成中固醇载体蛋白2的特定调节功能不一致。

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