首页> 美国卫生研究院文献>The Journal of Clinical Investigation >The bile acid synthetic gene 3β-hydroxy-Δ5-C27-steroid oxidoreductase is mutated in progressive intrahepatic cholestasis
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The bile acid synthetic gene 3β-hydroxy-Δ5-C27-steroid oxidoreductase is mutated in progressive intrahepatic cholestasis

机译:胆汁酸合成基因3β-羟基-Δ5-C27-类固醇氧化还原酶在进行性肝内胆汁淤积中发生突变

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摘要

We used expression cloning to isolate cDNAs encoding a microsomal 3β-hydroxy-Δ5-C27-steroid oxidoreductase (C27 3β-HSD) that is expressed predominantly in the liver. The predicted product shares 34% sequence identity with the C19 and C21 3β-HSD enzymes, which participate in steroid hormone metabolism. When transfected into cultured cells, the cloned C27 3β-HSD cDNA encodes an enzyme that is active against four 7α-hydroxylated sterols, indicating that a single C27 3β-HSD enzyme can participate in all known pathways of bile acid synthesis. The expressed enzyme did not metabolize several different C19/21 steroids as substrates. The levels of hepatic C27 3β-HSD mRNA in the mouse are not sexually dimorphic and do not change in response to dietary cholesterol or to changes in bile acid pool size. The corresponding human gene on chromosome 16p11.2-12 contains six exons and spans 3 kb of DNA, and we identified a 2-bp deletion in the C27 3β-HSD gene of a patient with neonatal progressive intrahepatic cholestasis. This mutation eliminates the activity of the enzyme in transfected cells. These findings establish the central role of C27 3β-HSD in the biosynthesis of bile acids and provide molecular tools for the diagnosis of a third type of neonatal progressive intrahepatic cholestasis associated with impaired bile acid synthesis.
机译:我们使用表达克隆来分离编码主要在肝脏中表达的微粒体3β-羟基-Δ 5 -C27-类固醇氧化还原酶(C273β-HSD)的cDNA。预测的产物与参与类固醇激素代谢的C19和C213β-HSD酶具有34%的序列同一性。当将其转染到培养细胞中时,克隆的C273β-HSDcDNA编码一种对四种7α-羟基化固醇具有活性的酶,表明单个C273β-HSD酶可以参与胆汁酸合成的所有已知途径。表达的酶未代谢几种不同的C19 / 21类固醇作为底物。小鼠中肝C273β-HSDmRNA的水平不是两性性的,不会响应饮食中的胆固醇或胆汁酸池大小的变化而改变。染色体16p11.2-12上相应的人类基因包含6个外显子,跨越3 kb的DNA,我们在新生儿进行性肝内胆汁淤积症患者的C273β-HSD基因中鉴定出2 bp的缺失。这种突变消除了转染细胞中酶的活性。这些发现确立了C273β-HSD在胆汁酸生物合成中的核心作用,并为诊断与胆汁酸合成受损有关的第三种新生儿进行性肝内胆汁淤积症提供了分子工具。

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