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分析CYP11B1基因中两个点突变(P94L和A368D)的功能和结构后果,这两个点突变导致因11β-羟化酶缺乏引起的先天性肾上腺皮质增生症。

Analyzing the functional and structural consequences of two point mutations (P94L and A368D) in the CYP11B1 gene causing congenital adrenal hyperplasia resulting from 11-hydroxylase deficiency.

作者信息

Krone Nils, Grischuk Yulia, Müller Marina, Volk Ruth Elisabeth, Grötzinger Joachim, Holterhus Paul-Martin, Sippell Wolfgang G, Riepe Felix G

机构信息

Division of Pediatric Endocrinology, Department of Pediatrics, Christian-Albrechts-Universität zu Kiel, Universitätsklinikum Schleswig-Holstein (Campus Kiel), Schwanenweg 20, D-24105 Kiel, Germany.

出版信息

J Clin Endocrinol Metab. 2006 Jul;91(7):2682-8. doi: 10.1210/jc.2006-0209. Epub 2006 May 2.

Abstract

CONTEXT

Congenital adrenal hyperplasia is a group of autosomal recessive inherited disorders of steroidogenesis. The deficiency of steroid 11-hydroxylase (CYP11B1) resulting from mutations in the CYP11B1 gene is the second most frequent cause.

OBJECTIVE

We studied the functional and structural consequences of two CYP11B1 missense mutations, which were detected in a 1.8-yr-old boy with acne and precocious pseudopuberty, to prove their clinical relevance and study their impact on CYP11B1 function.

RESULTS

The in vitro expression studies in COS-7 cells revealed an almost complete absence of CYP11B1 activity for the P94L mutant to 0.05% for the conversion of 11-deoxycortisol to cortisol. The A368D mutant severely reduced the CYP11B1 enzymatic activity to 1.17%. Intracellular localization studies by immunofluorescence revealed that the mutants were correctly localized. Introducing these mutations in a three-dimensional model structure of the CYP11B1 protein provides a possible explanation for the effects measured in vitro. We hypothesize that the A368D mutation interferes with structures important for substrate specificity and heme iron binding, thus explaining its major functional impact. However, according to structural analysis, we would expect only a minor effect of the P94L mutant on 11-hydroxylase activity, which contrasts with the observed major effect of this mutation both in vitro and in vivo.

CONCLUSION

Analyzing the in vitro enzyme function is a complementary procedure to genotyping and a valuable tool for understanding the clinical phenotype of 11-hydroxylase deficiency. This is the basis for accurate genetic counseling, prenatal diagnosis, and treatment. Moreover, the combination of in vitro enzyme function and molecular modeling provides valuable insights in cytochrome P450 structural-functional relationships, although one must be aware of the limitations of in silico-based methods.

摘要

背景

先天性肾上腺皮质增生症是一组常染色体隐性遗传的类固醇生成障碍疾病。由CYP11B1基因突变导致的类固醇11β-羟化酶(CYP11B1)缺乏是第二常见病因。

目的

我们研究了在一名患有痤疮和性早熟假性青春期的1.8岁男孩中检测到的两种CYP11B1错义突变的功能和结构后果,以证明其临床相关性并研究它们对CYP11B1功能的影响。

结果

在COS-7细胞中的体外表达研究显示,P94L突变体几乎完全缺乏CYP11B1活性,11-脱氧皮质醇转化为皮质醇的活性仅为0.05%。A368D突变体将CYP11B1酶活性严重降低至1.17%。通过免疫荧光进行的细胞内定位研究表明,突变体定位正确。在CYP11B1蛋白的三维模型结构中引入这些突变,为体外测量的效应提供了一种可能的解释。我们推测,A368D突变干扰了对底物特异性和血红素铁结合重要的结构,从而解释了其主要功能影响。然而,根据结构分析,我们预计P94L突变体对11β-羟化酶活性只有轻微影响,这与该突变在体外和体内观察到的主要影响形成对比。

结论

分析体外酶功能是基因分型的补充程序,也是理解11β-羟化酶缺乏临床表型的有价值工具。这是准确进行遗传咨询、产前诊断和治疗的基础。此外,体外酶功能和分子建模的结合为细胞色素P450结构-功能关系提供了有价值的见解,尽管必须意识到基于计算机模拟方法的局限性。

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