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儿茶酚-O-甲基转移酶(COMT)基因val158met多态性与女孩青春期早期发育、身高及皮质骨量相关。

The COMT val158met polymorphism is associated with early pubertal development, height and cortical bone mass in girls.

作者信息

Eriksson Anna-Lena, Suuriniemi Miia, Mahonen Anitta, Cheng Sulin, Ohlsson Claes

机构信息

Center for Bone Research at Sahlgrenska Academy, Division of Clinical Pharmacology, Dept. of Internal Medicine, Göteborg University, SE-413 45 Göteborg, Sweden.

出版信息

Pediatr Res. 2005 Jul;58(1):71-7. doi: 10.1203/01.PDR.0000163383.49747.B5.

Abstract

Estrogens are involved in accretion of bone mass during puberty. Catechol-O-Methyltransferase (COMT) is involved in the degradation of estrogens. In this cross-sectional study we investigated associations between the COMT val158met polymorphism, which results in a 60-75% difference in enzyme activity between the val (high activity = H) and the met (low activity = L) variant, and skeletal phenotypes in 246 healthy pre/early pubertal girls. Girls with COMT(LL) were 5.4 cm taller than COMT(HH) girls. Dual x-ray absorptiometry showed higher values of bone mineral content (BMC), and larger areas of total body, femur and spine in COMT(LL). Cortical BMC, measured by peripheral quantitative computerized tomography in the tibia, was 9.8% higher in COMT(LL) compared with COMT(HH). This was due to a larger cortical cross sectional area while the cortical volumetric bone mineral density was not associated with COMT genotype. COMT(LL) girls had higher serum levels of free estradiol and insulin like growth factor. Regression models indicated that COMT genotype exerted effects on skeletal growth mainly via a regulation of free estradiol, resulting in an affected pubertal development (Tanner staging). We propose that the COMT(LL) genotype results in higher free estradiol levels and earlier pubertal development, leading to an increased skeletal growth in pre/early pubertal girls. Possible consequences for the adult skeleton however can be determined only after cessation of growth.

摘要

雌激素在青春期骨量增加过程中发挥作用。儿茶酚-O-甲基转移酶(COMT)参与雌激素的降解。在这项横断面研究中,我们调查了COMT val158met基因多态性与246名健康的青春期前/青春期早期女孩骨骼表型之间的关联,该基因多态性导致val(高活性 = H)和met(低活性 = L)变体之间的酶活性存在60 - 75%的差异。携带COMT(LL)的女孩比携带COMT(HH)的女孩高5.4厘米。双能X线吸收法显示,COMT(LL)组的骨矿物质含量(BMC)值更高,全身、股骨和脊柱的面积更大。通过外周定量计算机断层扫描测量的胫骨皮质BMC,COMT(LL)组比COMT(HH)组高9.8%。这是由于皮质横截面积更大,而皮质体积骨矿物质密度与COMT基因型无关。COMT(LL)组女孩的游离雌二醇和胰岛素样生长因子血清水平更高。回归模型表明,COMT基因型主要通过调节游离雌二醇对骨骼生长产生影响,从而导致青春期发育(坦纳分期)受到影响。我们认为,COMT(LL)基因型导致更高的游离雌二醇水平和更早的青春期发育,从而使青春期前/青春期早期女孩的骨骼生长增加。然而,对成年骨骼的可能影响只有在生长停止后才能确定。

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