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首页> 外文期刊>The Journal of biological chemistry >Peripheral Benzodiazepine Receptor/Translocator Protein Global Knock-out Mice Are Viable with No Effects on Steroid Hormone Biosynthesis
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Peripheral Benzodiazepine Receptor/Translocator Protein Global Knock-out Mice Are Viable with No Effects on Steroid Hormone Biosynthesis

机译:外周苯并二氮杂卓受体/译备器蛋白全球敲除小鼠是可行的,对类固醇激素生物合成没有影响

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Translocator protein (TSPO), previously known as the peripheral benzodiazepine receptor, is a mitochondrial outer membrane protein implicated as essential for cholesterol import to the inner mitochondrial membrane, the rate-limiting step in steroid hormone biosynthesis. Previous research on TSPO was based entirely on in vitro experiments, and its critical role was reinforced by an early report that claimed TSPO knock-out mice were embryonic lethal. In a previous publication, we examined Leydig cell-specific TSPO conditional knock-out mice that suggested TSPO was not required for testosterone production in vivo. This raised controversy and several questions regarding TSPO function. To examine the definitive role of TSPO in steroidogenesis and embryo development, we generated global TSPO null (Tspo?/?) mice. Contrary to the early report, Tspo?/? mice survived with no apparent phenotypic abnormalities and were fertile. Examination of adrenal and gonadal steroidogenesis showed no defects in Tspo?/? mice. Adrenal transcriptome comparison of gene expression profiles showed that genes involved in steroid hormone biosynthesis (Star, Cyp11a1, and Hsd3b1) were unchanged in Tspo?/? mice. Adrenocortical ultrastructure illustrated no morphological alterations in Tspo?/? mice. In an attempt to correlate our in vivo findings to previously used in vitro models, we also determined that siRNA knockdown or the absence of TSPO in different mouse and human steroidogenic cell lines had no effect on steroidogenesis. These findings directly refute the dogma that TSPO is indispensable for steroid hormone biosynthesis and viability. By amending the current model, this study advances our understanding of steroidogenesis with broad implications in biology and medicine.
机译:译备器蛋白(TSPO)以前称为外周苯二氮杂卓受体,是一种线粒体外膜蛋白,其含有对内线粒体膜的胆固醇进口的必由之非,类固醇激素生物合成的速率限制步骤。以前关于TSPO的研究完全依据体外实验,并通过一份提前报告加强了其关键作用,要求TSPO敲除小鼠是胚胎致命的。在先前的出版物中,我们研究了Leydig细胞特异性Tspo条件敲除,睾丸激素在体内不需要睾酮产生。这提出了关于TSPO函数的争议和几个问题。为了检查TSPO在甾体制生成和胚胎发育中的定义作用,我们生成了全球TSPO NULL(TSPO?/?)小鼠。与早期报告相反,TSPO?/?小鼠幸存下来没有明显的表型异常,并且是肥沃的。检查肾上腺和性腺甾体术在TSPO中没有缺陷?/?老鼠。基因表达谱的肾上腺转录组比较显示,参与类固醇激素生物合成(星,CYP11A1和HSD3B1)的基因在TSPO中不变?/?老鼠。肾上腺皮质超微结构在​​TSPO中没有说明形态改变?/?老鼠。为了试图将我们的体内发现与以前使用的体外模型相关联,我们还确定SiRNA敲低或在不同小鼠中没有TSPO和人类甾体细胞系对甾体产生没有影响。这些发现直接反驳了TSPO对于类固醇激素生物合成和活力是必不可少的。通过修改当前模型,本研究进展了我们对甾体化的理解,具有广泛的生物学和医学意义。

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