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斑马鱼中21-羟化酶的基因破坏导致肾上腺皮质增生。

Genetic Disruption of 21-Hydroxylase in Zebrafish Causes Interrenal Hyperplasia.

作者信息

Eachus Helen, Zaucker Andreas, Oakes James A, Griffin Aliesha, Weger Meltem, Güran Tülay, Taylor Angela, Harris Abigail, Greenfield Andy, Quanson Jonathan L, Storbeck Karl-Heinz, Cunliffe Vincent T, Müller Ferenc, Krone Nils

机构信息

Department of Biomedical Science, The Bateson Centre, United Kingdom.

Centre for Endocrinology, Diabetes, and Metabolism, College of Medical and Dental Sciences, University of Birmingham, United Kingdom.

出版信息

Endocrinology. 2017 Dec 1;158(12):4165-4173. doi: 10.1210/en.2017-00549.

Abstract

Congenital adrenal hyperplasia is a group of common inherited disorders leading to glucocorticoid deficiency. Most cases are caused by 21-hydroxylase deficiency (21OHD). The systemic consequences of imbalanced steroid hormone biosynthesis due to severe 21OHD remains poorly understood. Therefore, we developed a zebrafish model for 21OHD, which focuses on the impairment of glucocorticoid biosynthesis. A single 21-hydroxylase gene (cyp21a2) is annotated in the zebrafish genome based on sequence homology. Our in silico analysis of the 21-hydroxylase (Cyp21a2) protein sequence suggests a sufficient degree of similarity for the usage of zebrafish cyp21a2 to model aspects of human 21OHD in vivo. We determined the spatiotemporal expression patterns of cyp21a2 by whole-mount in situ hybridization and reverse transcription polymerase chain reaction throughout early development. Early cyp21a2 expression is restricted to the interrenal gland (zebrafish adrenal counterpart) and the brain. To further explore the in vivo consequences of 21OHD we created several cyp21a2 null-allele zebrafish lines by using a transcription activator-like effector nuclease genomic engineering strategy. Homozygous mutant zebrafish larvae showed an upregulation of the hypothalamic-pituitary-interrenal (HPI) axis and interrenal hyperplasia. Furthermore, Cyp21a2-deficient larvae had a typical steroid profile, with reduced concentrations of cortisol and increased concentrations of 17-hydroxyprogesterone and 21-deoxycortisol. Affected larvae showed an upregulation of the HPI axis and interrenal hyperplasia. Downregulation of the glucocorticoid-responsive genes pck1 and fkbp5 indicated systemic glucocorticoid deficiency. Our work demonstrates the crucial role of Cyp21a2 in glucocorticoid biosynthesis in zebrafish larvae and establishes an in vivo model allowing studies of systemic consequences of altered steroid hormone synthesis.

摘要

先天性肾上腺增生是一组导致糖皮质激素缺乏的常见遗传性疾病。大多数病例由21-羟化酶缺乏症(21OHD)引起。由于严重的21OHD导致的类固醇激素生物合成失衡的全身后果仍知之甚少。因此,我们开发了一种用于21OHD的斑马鱼模型,该模型侧重于糖皮质激素生物合成的损害。基于序列同源性,在斑马鱼基因组中注释了单个21-羟化酶基因(cyp21a2)。我们对21-羟化酶(Cyp21a2)蛋白质序列的计算机分析表明,斑马鱼cyp21a2在体内模拟人类21OHD方面具有足够的相似程度。我们通过全胚胎原位杂交和逆转录聚合酶链反应确定了整个早期发育过程中cyp21a2的时空表达模式。早期cyp21a2表达仅限于肾上腺髓质(斑马鱼肾上腺对应物)和大脑。为了进一步探索21OHD的体内后果,我们使用转录激活样效应核酸酶基因组工程策略创建了几个cyp21a2无效等位基因斑马鱼品系。纯合突变斑马鱼幼虫表现出下丘脑-垂体-肾上腺髓质(HPI)轴上调和肾上腺髓质增生。此外,Cyp21a2缺陷型幼虫具有典型的类固醇谱,皮质醇浓度降低,17-羟孕酮和21-脱氧皮质醇浓度升高。受影响的幼虫表现出HPI轴上调和肾上腺髓质增生。糖皮质激素反应基因pck1和fkbp5的下调表明全身糖皮质激素缺乏。我们的工作证明了Cyp21a2在斑马鱼幼虫糖皮质激素生物合成中的关键作用,并建立了一个体内模型,可用于研究类固醇激素合成改变的全身后果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abc2/5711382/7d6df5c9ffd4/en.2017-00549f1.jpg

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