Division of Animal Sciences, University of Missouri, 920 East Campus Drive, Columbia, MO 65211, USA.
MU Institute for Data Science and Informatics, University of Missouri, Columbia, MO 65211, USA.
Int J Mol Sci. 2021 Sep 7;22(18):9693. doi: 10.3390/ijms22189693.
In this study, we investigated the effects of ablation of uterine Forkhead Box A2 () on gene expression of fetal brain relative to placenta. Using a conditional knockout mouse model for uterine , here we show that the lack of uterine elicits a sexually-conflicting transcriptional response in the fetal brain relative to placenta. The ablation of in the uterus altered expression of genes related to growth, nutrient sensing, aging, longevity and angiogenesis among others. In the wildtype mice, these genes were expressed higher in the fetal brain and placenta of males compared to females. However, in mice lacking uterine , the same genes showed the opposite pattern i.e., higher expression in the fetal brain and placenta of females compared to males. Based on the known marker genes of mice placenta and fetal brain cells, we further predicted that the genes exhibiting the sexually conflicting expression were associated with vascular endothelial cells. Overall, our study suggests that uterine plays a role in the regulation of the brain-placental axis by influencing the fetoplacental vascular changes during pregnancy.
在这项研究中,我们调查了子宫叉头框 A2 (FOXA2) 缺失对胎儿大脑相对于胎盘的基因表达的影响。使用子宫特异性条件性敲除小鼠模型,我们发现子宫中 FOXA2 的缺失会引起胎儿大脑相对于胎盘的性冲突转录反应。子宫中 FOXA2 的缺失改变了与生长、营养感应、衰老、长寿和血管生成等相关的基因的表达。在野生型小鼠中,这些基因在雄性胎儿大脑和胎盘中的表达高于雌性。然而,在缺乏子宫 FOXA2 的小鼠中,相同的基因表现出相反的模式,即雌性胎儿大脑和胎盘中的表达高于雄性。基于已知的小鼠胎盘和胎儿脑细胞标记基因,我们进一步预测表现出性冲突表达的基因与血管内皮细胞有关。总的来说,我们的研究表明,子宫 FOXA2 通过影响妊娠期间胎盘中的血管变化,在调节脑胎盘轴方面发挥作用。