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2型11β-羟基类固醇脱氢酶基因变异与原发性高血压之间的关联。

Association between a variant in the 11 beta-hydroxysteroid dehydrogenase type 2 gene and primary hypertension.

作者信息

Melander O, Orho-Melander M, Bengtsson K, Lindblad U, Råstam L, Groop L, Hulthén U L

机构信息

Department of Endocrinology, Lund University, Malmö, Sweden.

出版信息

J Hum Hypertens. 2000 Dec;14(12):819-23. doi: 10.1038/sj.jhh.1001116.

Abstract

The enzyme 11 beta-hydroxysteroid dehydrogenase type 2 (11BHSD2) converts cortisol to cortisone in the kidney, thereby protecting the mineralocorticoid receptor from the mineralocorticoid actions of cortisol. The syndrome of Apparent Mineralocorticoid Excess (AME), a rare monogenic form of early onset hypertension with autosomal recessive inheritance, is caused by homozygous or compound heterozygous loss of function mutations in the 11BHSD2 gene. Association has been reported between a microsatellite marker flanking the 11BHSD2 gene (D16S496) and primary hypertension. The aim of this study was to identify variants in the 11BHSD2 gene and to test if such variants or the D16S496 are associated with primary hypertension, in Swedes. To address this, the coding sequences of the 11BHSD2 gene was screened for mutations in 20 patients with primary hypertension with single strand conformation polymorphism and direct DNA sequencing techniques. A polymorphism was identified in exon 3; G534A (Glu178Glu). This polymorphism and the D16S496 microsatellite were tested for association with primary hypertension in a population consisting of 292 patients with primary hypertension and 263 normotensive control subjects. The frequency of G534G homozygotes was higher in patients with primary hypertension than in normotensive control subjects (92.8% vs 87.8%; P < 0.05). The allele frequencies of the D16S496 microsatellite did not differ between the two groups (chi(2) = 11.0, df = 10; P = 0.36). In conclusion, over-representation of individuals homozygous for the G534 allele in hypertensive patients compared with control subjects suggests that a mutation in linkage disequilibrium with the G534A polymorphism could increase susceptibility to primary hypertension. Journal of Human Hypertension (2000) 14, 819-823

摘要

2型11β-羟类固醇脱氢酶(11BHSD2)可将肾脏中的皮质醇转化为可的松,从而保护盐皮质激素受体免受皮质醇的盐皮质激素作用。表观盐皮质激素过多综合征(AME)是一种罕见的早发性高血压单基因形式,具有常染色体隐性遗传,由11BHSD2基因的纯合或复合杂合功能丧失突变引起。据报道,11BHSD2基因侧翼的微卫星标记(D16S496)与原发性高血压之间存在关联。本研究的目的是在瑞典人中鉴定11BHSD2基因中的变异,并测试此类变异或D16S496是否与原发性高血压相关。为了解决这个问题,采用单链构象多态性和直接DNA测序技术,对20例原发性高血压患者的11BHSD2基因编码序列进行了突变筛查。在第3外显子中鉴定出一种多态性;G534A(Glu178Glu)。在由292例原发性高血压患者和263例血压正常对照者组成的人群中,测试了这种多态性和D16S496微卫星与原发性高血压的相关性。原发性高血压患者中G534G纯合子的频率高于血压正常对照者(92.8%对87.8%;P<0.05)。两组间D16S496微卫星的等位基因频率无差异(χ2=11.0,自由度=10;P=0.36)。总之,与对照者相比,高血压患者中G534等位基因纯合个体的比例过高,这表明与G534A多态性处于连锁不平衡状态的突变可能会增加原发性高血压的易感性。《人类高血压杂志》(2000年)14卷,819 - 823页

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