Liu Yao-Zhong, Guo Yan-Fang, Wang Liang, Tan Li-Jun, Liu Xiao-Gang, Pei Yu-Fang, Yan Han, Xiong Dong-Hai, Deng Fei-Yan, Yu Na, Zhang Yin-Ping, Zhang Lei, Lei Shu-Feng, Chen Xiang-Ding, Liu Hong-Bin, Zhu Xue-Zhen, Levy Shawn, Papasian Christopher J, Drees Betty M, Hamilton James J, Recker Robert R, Deng Hong-Wen
School of Medicine, University of Missouri Kansas City, Kansas City, Missouri, United States of America.
PLoS Genet. 2009 Mar;5(3):e1000420. doi: 10.1371/journal.pgen.1000420. Epub 2009 Mar 13.
For females, menarche is a most significant physiological event. Age at menarche (AAM) is a trait with high genetic determination and is associated with major complex diseases in women. However, specific genes for AAM variation are largely unknown. To identify genetic factors underlying AAM variation, a genome-wide association study (GWAS) examining about 380,000 SNPs was conducted in 477 Caucasian women. A follow-up replication study was performed to validate our major GWAS findings using two independent Caucasian cohorts with 854 siblings and 762 unrelated subjects, respectively, and one Chinese cohort of 1,387 unrelated subjects--all females. Our GWAS identified a novel gene, SPOCK (Sparc/Osteonectin, CWCV, and Kazal-like domains proteoglycan), which had seven SNPs associated with AAM with genome-wide false discovery rate (FDR) q<0.05. Six most significant SNPs of the gene were selected for validation in three independent replication cohorts. All of the six SNPs were replicated in at least one cohort. In particular, SNPs rs13357391 and rs1859345 were replicated both within and across different ethnic groups in all three cohorts, with p values of 5.09 x 10(-3) and 4.37 x 10(-3), respectively, in the Chinese cohort and combined p values (obtained by Fisher's method) of 5.19 x 10(-5) and 1.02 x 10(-4), respectively, in all three replication cohorts. Interestingly, SPOCK can inhibit activation of MMP-2 (matrix metalloproteinase-2), a key factor promoting endometrial menstrual breakdown and onset of menstrual bleeding. Our findings, together with the functional relevance, strongly supported that the SPOCK gene underlies variation of AAM.
对于女性而言,初潮是一项极为重要的生理事件。初潮年龄(AAM)是一种受遗传因素高度决定的性状,并且与女性的主要复杂疾病相关。然而,导致AAM变异的具体基因在很大程度上尚不清楚。为了确定AAM变异背后的遗传因素,在477名白种女性中开展了一项全基因组关联研究(GWAS),检测了约380,000个单核苷酸多态性(SNP)。进行了一项后续重复研究,分别使用两个独立的白种人队列(854名同胞和762名无关个体)以及一个包含1387名无关个体的中国女性队列来验证我们GWAS的主要发现。我们的GWAS鉴定出一个新基因,即富含半胱氨酸的酸性分泌蛋白(SPOCK,Sparc/Osteonectin、CWCV和Kazal样结构域蛋白聚糖),该基因有7个SNP与AAM相关,全基因组错误发现率(FDR)q<0.05。选择该基因的6个最显著SNP在三个独立的重复队列中进行验证。所有这6个SNP在至少一个队列中得到了重复验证。特别是,SNP rs13357391和rs1859345在所有三个队列的不同种族群体内部和之间均得到了重复验证,在中国队列中的p值分别为5.09×10⁻³和4.37×10⁻³,在所有三个重复队列中的合并p值(通过Fisher方法获得)分别为5.19×10⁻⁵和1.02×10⁻⁴。有趣的是,SPOCK可以抑制基质金属蛋白酶-2(MMP-2)的激活,MMP-2是促进子宫内膜月经崩解和月经出血开始的关键因素。我们的研究结果,连同其功能相关性,有力地支持了SPOCK基因是AAM变异的基础。