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鉴定 CYP17A1 基因中的一个新突变。

Identification of a novel mutation in CYP17A1 gene.

机构信息

State Key Laboratory of Medical Genomics, Molecular Medical Centre, Shanghai Institute of Endocrinology, Ruijin Hospital, Shanghai Jiao Tong University School of Medicine, China.

出版信息

Transl Res. 2013 Jan;161(1):44-9. doi: 10.1016/j.trsl.2012.08.007. Epub 2012 Oct 1.

Abstract

17α-hydroxylase/17,20-lyase deficiency (17OHD) is a rare autosomal recessive genetic disease that is characterized by low-renin hypertension, hypokalemia, and abnormal development of the genitalia. Mutations in the CYP17A1 gene account for this disease. We aim to investigate the CYP17A1 mutation and analyze its possible influence on phenotype in a Chinese patient with 17OHD. Steroid hormones were assayed. The 8 exons of the CYP17A1 gene were amplified and directly sequenced. Wild-type and mutant CYP17A1 cDNA were cloned into pcDNA3.1 expression vectors and transfected into 293T cells. Finally, 17-hydroxylase and 17,20-lyase activity were detected by using progesterone and 17-hydroxypregnenolone as the substrates. A novel missense mutation c.716 G>A located in exon 4 that changed the amino acid from arginine to glutamine (R239Q) was discovered in the patient. Steric model analysis of CYP17A1 showed that R239Q changed the local structure and the electrostatic potential. Functional study indicated that the R239Q mutant caused the complete loss of both 17α-hydroxylase and 17,20-lyase activities. Our study expanded the CYP17A1 mutation spectrum. With a functional study, we confirmed that the novel mutation caused the complete loss of both 17α-hydroxylase and 17,20-lyase activities.

摘要

17α-羟化酶/17,20-裂合酶缺陷(17OHD)是一种罕见的常染色体隐性遗传疾病,其特征为低肾素性高血压、低钾血症和生殖器发育异常。CYP17A1 基因突变可导致该疾病。我们旨在研究中国 17OHD 患者 CYP17A1 突变,并分析其对表型的可能影响。检测了类固醇激素。扩增 CYP17A1 基因的 8 个外显子,并直接测序。将野生型和突变型 CYP17A1 cDNA 克隆到 pcDNA3.1 表达载体中,并转染 293T 细胞。最后,以孕酮和 17-羟孕烯醇酮为底物检测 17α-羟化酶和 17,20-裂合酶活性。在患者中发现了一种新的错义突变 c.716 G>A,位于外显子 4 中,导致氨基酸从精氨酸变为谷氨酰胺(R239Q)。CYP17A1 的立体模型分析表明,R239Q 改变了局部结构和静电势。功能研究表明,R239Q 突变导致 17α-羟化酶和 17,20-裂合酶活性完全丧失。我们的研究扩展了 CYP17A1 突变谱。通过功能研究,我们证实了该新突变导致 17α-羟化酶和 17,20-裂合酶活性完全丧失。

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