Guo Yan, Xiong Dong-Hai, Yang Tie-Lin, Guo Yan-Fang, Recker Robert R, Deng Hong-Wen
Key Laboratory of Biomedical Information Engineering, Ministry of Education and Institute of Molecular Genetics, School of Life Science and Technology, Xi'an Jiaotong University, Xi'an 710049, People's Republic of China.
Hum Mol Genet. 2006 Aug 15;15(16):2401-8. doi: 10.1093/hmg/ddl155. Epub 2006 Jun 16.
Variation in age at menarche (AAM) is known to be substantially influenced by genetic factors, but the true causal genes remain largely unidentified. Because the increased amplitude of estrogen exposure of tissues initiates the onset of menarche, the genes involved in estrogen biosynthesis are natural candidate genes underlying AAM. Our study aimed to identify whether the CYP17 and CYP19, the two key genes involved in the biosynthesis of estrogen, are associated with AAM variation in 1048 females from 354 Caucasian nuclear families. We genotyped 38 SNPs and established the linkage disequilibrium blocks and haplotype structures that covered the full transcript length of those two genes. Family-based and population-based statistical analyses were used to test for associations with all of the single SNPs and haplotypes. Both methods consistently detected significant associations for five SNPs of CYP19 with AAM. Haplotype analyses corroborated our single-SNP results by showing that the haplotypes in block 1 were highly significant to AAM in population-based analyses. However, we could not find any association of CYP17 with AAM. Our study is the first to suggest the important effect of CYP19 on AAM variation in Caucasian females. It will be valuable to replicate and confirm these findings in other independent studies, aiming at eventually finding the hidden genetic mechanisms underlying the variation in AAM.
初潮年龄(AAM)的差异已知会受到遗传因素的显著影响,但真正的因果基因在很大程度上仍未确定。由于组织中雌激素暴露幅度的增加引发了初潮的开始,参与雌激素生物合成的基因是AAM潜在的天然候选基因。我们的研究旨在确定参与雌激素生物合成的两个关键基因CYP17和CYP19是否与来自354个白种人核心家庭的1048名女性的AAM差异相关。我们对38个单核苷酸多态性(SNP)进行了基因分型,并建立了覆盖这两个基因全长转录本的连锁不平衡模块和单倍型结构。基于家系和基于群体的统计分析被用于检验与所有单个SNP和单倍型的关联性。两种方法均一致检测到CYP19的五个SNP与AAM存在显著关联。单倍型分析通过显示在基于群体的分析中模块1中的单倍型对AAM具有高度显著性,证实了我们的单SNP结果。然而,我们未发现CYP17与AAM存在任何关联。我们的研究首次表明CYP19对白种女性AAM差异具有重要影响。在其他独立研究中重复并确认这些发现将很有价值,最终目标是找到AAM差异背后隐藏的遗传机制。