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Angiotensin II Triggers Expression of the Adrenal Gland Zona Glomerulosa-Specific 3β-Hydroxysteroid Dehydrogenase Isoenzyme through De Novo Protein Synthesis of the Orphan Nuclear Receptors NGFIB and NURR1

机译:血管紧张素II通过孤儿核受体NGFIB和NURR1的从头蛋白质合成触发肾上腺带状肾小球特异性3β-羟基类固醇脱氢酶同工酶的表达。

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摘要

The 3β-hydroxysteroid dehydrogenase (3β-HSD) is an enzyme crucial for steroid synthesis. Two different 3β-HSD isoforms exist in humans. Classically, HSD3B2 was considered the principal isoform present in the adrenal. However, we recently showed that the alternative isoform, HSD3B1, is expressed specifically within the adrenal zona glomerulosa (ZG), where aldosterone is produced, raising the question of why this isozyme needs to be expressed in this cell type. Here we show that in both human and mouse, expression of the ZG isoform 3β-HSD is rapidly induced upon angiotensin II (AngII) stimulation. AngII is the key peptide hormone regulating the capacity of aldosterone synthesis. Using the human adrenocortical H295R cells as a model system, we show that the ZG isoform HSD3B1 differs from HSD3B2 in the ability to respond to AngII. Mechanistically, the induction of HSD3B1 involves de novo protein synthesis of the nuclear orphan receptors NGFIB and NURR1. The HSD3B1 promoter contains a functional NGFIB/NURR1-responsive element to which these proteins bind in response to AngII. Knockdown of these proteins and overexpression of a dominant negative NGFIB both reduce the AngII responsiveness of HSD3B1. Thus, the AngII-NGFIB/NURR1 pathway controls HSD3B1. Our work reveals HSD3B1 as a new regulatory target of AngII.
机译:3β-羟基类固醇脱氢酶(3β-HSD)是类固醇合成的关键酶。人类中存在两种不同的3β-HSD亚型。经典地,HSD3B2被认为是存在于肾上腺中的主要同工型。但是,我们最近发现,替代的同种型HSD3B1在产生醛固酮的肾上腺肾小球(ZG)中特异性表达,这引发了为什么需要在这种细胞类型中表达这种同功酶的问题。在这里,我们显示在人和小鼠中,血管紧张素II(AngII)刺激都能迅速诱导ZG同工型3β-HSD的表达。 AngII是调节醛固酮合成能力的关键肽激素。使用人类肾上腺皮质H295R细胞作为模型系统,我们显示ZG亚型HSD3B1在响应AngII的能力上与HSD3B2不同。从机制上讲,HSD3B1的诱导涉及核孤儿受体NGFIB和NURR1的从头蛋白质合成。 HSD3B1启动子包含功能性NGFIB / NURR1反应元件,这些蛋白质响应AngII与之结合。这些蛋白的敲低和显性负NGFIB的过度表达都降低了HSD3B1的AngII反应性。因此,AngII-NGFIB / NURR1途径控制HSD3B1。我们的工作揭示了HSD3B1作为AngII的新调控靶标。

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