Howard Hughes Medical Institute and Department of Molecular Genetics and Microbiology and Department of Biology, University of Florida, Gainesville, FL 32610, USA.
Proc Natl Acad Sci U S A. 2011 Sep 27;108(39):16289-94. doi: 10.1073/pnas.1108312108. Epub 2011 Sep 6.
Males and females generally have different finger proportions. In males, digit 2 is shorter than digit 4, but in females digit 2 is the same length or longer than digit 4. The second- to fourth-digit (2D:4D) ratio correlates with numerous sexually dimorphic behavioral and physiological conditions. Although correlational studies suggest that digit ratios reflect prenatal exposure to androgen, the developmental mechanism underlying sexually dimorphic digit development remains unknown. Here we report that the 2D:4D ratio in mice is controlled by the balance of androgen to estrogen signaling during a narrow window of digit development. Androgen receptor (AR) and estrogen receptor α (ER-α) activity is higher in digit 4 than in digit 2. Inactivation of AR decreases growth of digit 4, which causes a higher 2D:4D ratio, whereas inactivation of ER-α increases growth of digit 4, which leads to a lower 2D:4D ratio. We also show that addition of androgen has the same effect as inactivation of ER and that addition of estrogen mimics the reduction of AR. Androgen and estrogen differentially regulate the network of genes that controls chondrocyte proliferation, leading to differential growth of digit 4 in males and females. These studies identify previously undescribed molecular dimorphisms between male and female limb buds and provide experimental evidence that the digit ratio is a lifelong signature of prenatal hormonal exposure. Our results also suggest that the 2D:4D ratio can serve as an indicator of disrupted endocrine signaling during early development, which may aid in the identification of fetal origins of adult diseases.
男性和女性通常具有不同的手指比例。在男性中,第二指比第四指短,但在女性中,第二指与第四指长度相等或更长。第二至第四指(2D:4D)的比例与许多性别二态性的行为和生理状况相关。虽然相关研究表明,手指比例反映了胎儿期雄激素暴露情况,但性别二态性手指发育的发育机制仍不清楚。在这里,我们报告说,在一个狭窄的手指发育窗口中,小鼠的 2D:4D 比例受雄激素对雌激素信号的平衡控制。与第二指相比,第四指中的雄激素受体(AR)和雌激素受体α(ER-α)活性更高。AR 的失活会降低第四指的生长,从而导致更高的 2D:4D 比例,而 ER-α 的失活会增加第四指的生长,从而导致更低的 2D:4D 比例。我们还表明,雄激素的添加具有与 ER 失活相同的效果,而雌激素的添加则模拟了 AR 的减少。雄激素和雌激素差异调节控制软骨细胞增殖的基因网络,导致男性和女性第四指的生长差异。这些研究确定了以前在男性和女性肢芽之间未被描述的分子二态性,并提供了实验证据表明,手指比例是胎儿期激素暴露的终生特征。我们的结果还表明,2D:4D 比例可以作为早期发育中内分泌信号中断的指标,这可能有助于识别成人疾病的胎儿起源。