Yang Tie-Lin, Xiong Dong-Hai, Guo Yan, Recker Robert R, Deng Hong-Wen
The Key Laboratory of Biomedical Information Engineering, Ministry of Education, Institute of Molecular Genetics, School of Life Science and Technology, Xi'an Jiaotong University, Xi'an, PR China.
Eur J Hum Genet. 2008 Nov;16(11):1380-7. doi: 10.1038/ejhg.2008.113. Epub 2008 Jun 18.
Human adult height is closely related to body growth that is regulated by multiple cytokines or hormones like growth hormone (GH) and estrogen. Our study focused on three potential candidate genes to human height, namely IGF1 (insulin-like growth factor 1), ESR2, and CYP17. We genotyped 43 single nucleotide polymorphisms (SNPs) and tested their associations in 1873 subjects from 405 nuclear families, using both the family-based quantitative transmission disequilibrium test (QTDT) and population-based ANOVA methods. Both analyses consistently detected that two novel SNPs of IGF1, rs5742694 and rs2033178, were significantly associated with human height, with the P-values of 0.0097 and 0.0057 in QTDT analyses, 0.0002/0.004 (sample 1/sample 2) and 8.46 x 10(-5)/1.92 x 10(-5) in ANOVA analyses. For ESR2, significant associations were only detected in women (rs1256061: QTDT P=0.002, ANOVA P=0.002/0.012; rs17766755: QTDT P=0.019, ANOVA P=0.023/0.006; rs1256044: QTDT P=0.022, ANOVA P=0.002/0.034). Haplotype analyses corroborated our single-SNP results. However, no association was detected between CYP17 and human height. In conclusion, we identified the important effects of IGF1 and ESR2 on adult height variation in Caucasians, and first suggested the potential sex-specific effect of ESR2 on height variation in Caucasian women. It will be valuable for other independent studies to replicate and confirm these findings.
人类成年身高与身体生长密切相关,身体生长受多种细胞因子或激素调控,如生长激素(GH)和雌激素。我们的研究聚焦于与人类身高相关的三个潜在候选基因,即胰岛素样生长因子1(IGF1)、雌激素受体2(ESR2)和细胞色素P450 17α酶(CYP17)。我们对43个单核苷酸多态性(SNP)进行了基因分型,并使用基于家系的定量传递不平衡检验(QTDT)和基于群体的方差分析方法,在来自405个核心家庭的1873名受试者中测试了它们之间的关联。两种分析均一致检测到,IGF1的两个新SNP,即rs5742694和rs2033178,与人类身高显著相关,在QTDT分析中的P值分别为0.0097和0.0057,在方差分析中的P值分别为0.0002/0.004(样本1/样本2)和8.46×10⁻⁵/1.92×10⁻⁵。对于ESR2,仅在女性中检测到显著关联(rs1256061:QTDT P = 0.002,方差分析P = 0.002/0.012;rs17766755:QTDT P = 0.019,方差分析P = 0.023/0.006;rs1256044:QTDT P = 0.022,方差分析P = 0.002/0.034)。单倍型分析证实了我们的单SNP结果。然而,未检测到CYP17与人类身高之间的关联。总之,我们确定了IGF1和ESR2对高加索人成年身高变异的重要影响,并首次提出ESR2对高加索女性身高变异可能存在性别特异性影响。其他独立研究重复并证实这些发现将很有价值。