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6例由CYP11B1基因新突变引起的先天性肾上腺皮质增生症患者的表型、代谢及分子遗传学特征

Phenotypic, metabolic, and molecular genetic characterization of six patients with congenital adrenal hyperplasia caused by novel mutations in the CYP11B1 gene.

作者信息

Nguyen Huy-Hoang, Eiden-Plach Antje, Hannemann Frank, Malunowicz Ewa M, Hartmann Michaela F, Wudy Stefan A, Bernhardt Rita

机构信息

Department of Biochemistry, Saarland University, D-66123 Saarbrücken, Campus B2.2, Germany; Institute of Genome Research, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet, Hanoi, Vietnam.

Department of Biochemistry, Saarland University, D-66123 Saarbrücken, Campus B2.2, Germany.

出版信息

J Steroid Biochem Mol Biol. 2016 Jan;155(Pt A):126-34. doi: 10.1016/j.jsbmb.2015.10.011. Epub 2015 Oct 22.

Abstract

Congenital adrenal hyperplasia (CAH) is an autosomal recessive inherited disorder of steroidogenesis. Steroid 11β-hydroxylase deficiency (11β-OHD) due to mutations in the CYP11B1 gene is the second most common form of CAH. In this study, 6 patients suffering from CAH were diagnosed with 11β-OHD using urinary GC-MS steroid metabolomics analysis. The molecular basis of the disorder was investigated by molecular genetic analysis of the CYP11B1 gene, functional characterization of splicing and missense mutations, and analysis of the missense mutations in a computer model of CYP11B1. All patients presented with abnormal clinical signs of hyperandrogenism. Their urinary steroid metabolomes were characterized by excessive excretion rates of metabolites of 11-deoxycortisol as well as metabolites of 11-deoxycorticosterone, and allowed definite diagnosis. Patient 1 carries compound heterozygous mutations consisting of a novel nonsense mutation p.Q102X (c.304C>T) in exon 2 and the known missense mutation p.T318R (c.953C>G) in exon 5. Two siblings (patient 2 and 3) were compound heterozygous carriers of a known splicing mutation c.1200+1G>A in intron 7 and a known missense mutation p.R448H (c.1343G>A) in exon 8. Minigene experiments demonstrated that the c.1200+1G>A mutation caused abnormal pre-mRNA splicing (intron retention). Two further siblings (patient 4 and 5) were compound heterozygous carriers of a novel missense mutation p.R332G (c.994C>G) in exon 6 and the known missense mutation p.R448H (c.1343G>A) in exon 8. A CYP11B1 activity study in COS-1 cells showed that only 11% of the enzyme activity remained in the variant p.R332G. Patient 6 carried a so far not described homozygous deletion g.2470_5320del of 2850 bp corresponding to a loss of the CYP11B1 exons 3-8. The breakpoints of the deletion are embedded into two typical 6 base pair repeats (GCTTCT) upstream and downstream of the gene. Experiments analyzing the influence of mutations on splicing and on enzyme function were applied as complementary procedures to genotyping and provided a rational basis for understanding the clinical phenotype of CAH.

摘要

先天性肾上腺皮质增生症(CAH)是一种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-羟化酶缺乏症(11β-OHD)是CAH的第二常见类型。在本研究中,通过尿气相色谱-质谱类固醇代谢组学分析,对6例患有CAH的患者诊断为11β-OHD。通过对CYP11B1基因进行分子遗传学分析、剪接和错义突变的功能表征以及在CYP11B1计算机模型中对错义突变进行分析,研究了该疾病的分子基础。所有患者均表现出雄激素过多的异常临床体征。他们的尿类固醇代谢组的特征是11-脱氧皮质醇代谢物以及11-脱氧皮质酮代谢物的排泄率过高,从而得以明确诊断。患者1携带复合杂合突变,由外显子2中的一个新的无义突变p.Q102X(c.304C>T)和外显子5中的已知错义突变p.T318R(c.953C>G)组成。两名兄弟姐妹(患者2和3)是内含子7中已知剪接突变c.1200+1G>A和外显子8中已知错义突变p.R448H(c.1343G>A)的复合杂合携带者。小基因实验表明,c.1200+1G>A突变导致异常的前体mRNA剪接(内含子保留)。另外两名兄弟姐妹(患者4和5)是外显子6中一个新的错义突变p.R332G(c.994C>G)和外显子8中已知错义突变p.R448H(c.1343G>A)的复合杂合携带者。在COS-1细胞中进行的CYP11B1活性研究表明,变体p.R332G中仅保留了11%的酶活性。患者6携带一个迄今未描述的2850 bp的纯合缺失g.2470_5320del,对应于CYP11B1外显子3-8的缺失。缺失的断点嵌入到基因上游和下游的两个典型的6个碱基对重复序列(GCTTCT)中。分析突变对剪接和酶功能影响的实验作为基因分型的补充程序应用,为理解CAH的临床表型提供了合理依据。

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