Department of Gynaecologic, Obstetric, and Paediatric Sciences, S. Orsola-Malpighi Hospital, University of Bologna, Bologna, Italy.
J Endocrinol Invest. 2012 Mar;35(3):298-305. doi: 10.3275/7680. Epub 2011 Apr 26.
Congenital adrenal hyperplasia (CAH) is mainly caused by the deficiency of the 21-hydroxylase enzyme coded by the CYP21A2 gene. However, some alleles in the non-classical form (NC-CAH) remain without identified mutations, suggesting the involvement of regulatory regions.
Our objective was to study an allele carrying the variant *13 G>A in the 3'UTR of the CYP21A2 gene identified in some patients with a mild form of NC-CAH in order to verify the possible implication of this variation with the phenotype observed.
Among all the subjects in whom the CYP21A2 gene was analyzed, 14 patients and 7 relatives heterozygous or homozygous for the *13 G>A substitution in 3'UTR were selected. Sequencing of DNA, genotyping, multiplex ligation-dependent probe amplification (MLPA), in vitro studies and bioinformatic analysis were performed.
The haplotype of the *13 G>A allele was identical in all the subjects with a monomodular structure composed by one C4A gene and one CYP21A2 gene without a second module with the CYP21A1P pseudogene. No other concomitant mutations were found in the region extending from 3 kb in the promoter and encompassing the polyadenylation signal. Both bioinformatic analysis and in vitro studies predicted an alteration of the RNA folding and expression, but no miRNA target sequences were found in this region.
The identification of a substitution in the 3'UTR of the gene associated with a mild form of NC-CAH suggests the importance of analyzing the CYP21A2 untranslated regions to better characterize and treat this subgroup of patients.
先天性肾上腺皮质增生症(CAH)主要是由于 CYP21A2 基因编码的 21-羟化酶缺乏引起的。然而,一些非经典形式(NC-CAH)的等位基因仍然没有发现突变,这表明可能涉及调控区域。
我们的目的是研究一个等位基因,该等位基因携带在一些轻度 NC-CAH 患者中发现的 CYP21A2 基因 3'UTR 中的变体*13 G>A,以验证这种变异与观察到的表型之间的可能关联。
在分析 CYP21A2 基因的所有受试者中,选择了 14 名患者和 7 名携带 3'UTR 中*13 G>A 替代的杂合或纯合的亲属。进行了 DNA 测序、基因分型、多重连接依赖性探针扩增(MLPA)、体外研究和生物信息学分析。
所有具有单模块结构的受试者的*13 G>A 等位基因的单倍型都是相同的,该结构由一个 C4A 基因和一个 CYP21A2 基因组成,没有第二个包含 CYP21A1P 假基因的模块。在从启动子延伸 3kb 并包含聚腺苷酸化信号的区域中没有发现其他伴随突变。生物信息学分析和体外研究均预测 RNA 折叠和表达会发生改变,但在该区域没有发现 miRNA 靶序列。
在与轻度 NC-CAH 相关的基因 3'UTR 中发现的替代提示了分析 CYP21A2 非翻译区以更好地描述和治疗这组患者的重要性。