Two homozygous mutations in the 11β-hydroxysteroid dehydrogenase type 2 gene in a case of apparent mineralocorticoid excess

被引:43
作者
Carvajal, CA
Gonzalez, AA
Romero, DG
González, A
Mosso, LM
Lagos, ET
Hevia, MD
Rosati, MP
Perez-Acle, TO
Gomez-Sanchez, CE
Montero, JA
Fardella, CE
机构
[1] Pontificia Univ Catolica Chile, Dept Endocrinol & Metab, Fac Med, Santiago, Chile
[2] Pontificia Univ Catolica Chile, Ctr Genom & Bioinformat, Santiago, Chile
[3] Hosp San Juan Dios, Dept Nephrol, Santiago, Chile
[4] Univ Mississippi, Med Ctr, Div Endocrinol, Jackson, MS 39216 USA
[5] GV Montgomery Vet Affairs Med Ctr, Jackson, MS 39216 USA
关键词
D O I
10.1210/jc.2002-021909
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The human microsomal 11beta-hydroxysteroid dehydrogenase type 2 (11betaHSD2) metabolizes active cortisol into cortisone and protects the mineralocorticoid receptor from glucocorticoid occupancy. In a congenital deficiency of 11beta-HSD2, the protective mechanism fails and cortisol gains inappropriate access to mineralocorticoid receptor, resulting in low-renin hypertension and hypokalemia. In the present study, we describe the clinical and molecular genetic characterization of a patient with a new mutation in the HSD11B2 gene. This is a 4-yr-old male with arterial hypertension. The plasma renin activity and serum aldosterone were undetectable in the presence of a high cortisol to cortisone ratio. PCR amplification and sequence analysis of HSD11B2 gene showed the homozygous mutation in exon 4 Asp223Asn (GAC --> AAC) and a single nucleotide substitution C-->T in intron 3. Using site-directed mutagenesis, we generated a mutant 11betaHSD2 cDNA containing the Asp223Asn mutation. Wild-type and mutant cDNA was transfected into Chinese hamster ovary cells and enzymatic activities were measured using radiolabeled cortisol and thin-layer chromatography. The mRNA and 11betaHSD2 protein were detected by RT-PCR and Western blot, respectively. Wild-type and mutant 11betaHSD2 protein was expressed in Chinese hamster ovary cells, but the mutant enzyme had only 6% of wildtype activity. In silico 3D modeling showed that Asp223Asn changed the enzyme's surface electrostatic potential affecting the cofactor and substrate enzyme-binding capacity. The single substitution C-->T in intron 3 (IVS3 + 14 C-->T) have been previously reported that alters the normal splicing of pre-mRNA, given a nonfunctional protein. These findings may determine the full inactivation of this enzyme, explaining the biochemical profile and the early onset of hypertension seen in this patient.
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页码:2501 / 2507
页数:7
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