Department of Animal Sciences, D. H. Barron Reproductive and Perinatal Biology Research Program and Genetics Institute, University of Florida, Gainesville, Florida, USA.
Department of Molecular Genetics and Microbiology, Center for Epigenetics and Genetics Institute, University of Florida, Gainesville, Florida, USA.
Biol Reprod. 2017 May 1;96(5):948-959. doi: 10.1093/biolre/iox037.
The process of spatial rearrangement of cells of the inner cell mass (ICM) that are destined to become hypoblast is not well understood. The observation that the chemokine (C-C motif) ligand 24 (CCL24) and several other genes involved in chemokine signaling are expressed more in the ICM than in the trophectoderm of the bovine embryo resulted in the hypothesis that CCL24 participates in spatial organization of the ICM. Temporally, expression of CCL24 in the bovine embryo occurs coincidently with blastocyst formation: transcript abundance was low until the late morula stage, peaked in the blastocyst at Day 7 of development and declined by Day 9. Treatment of embryos with two separate antagonists of C-C motif chemokine receptor 3 (the prototypical receptor for CCL24) decreased the percent of GATA6+ cells (hypoblast precursors) that were located in the outside of the ICM. Similarly, injection of zygotes with a CCL24-specific morpholino decreased the percent of GATA6+ cells in the outside of the ICM. In conclusion, CCL24 assists in spatial arrangement of the ICM in the bovine embryo. This experiment points to new functions of chemokine signaling in the bovine embryo and is consistent with the idea that cell migration is involved in the spatial organization of hypoblast cells in the blastocyst.
细胞内细胞团 (ICM) 中注定要成为下胚层的细胞的空间重排过程尚不清楚。观察到趋化因子 (C-C 基序) 配体 24 (CCL24) 和其他几个参与趋化因子信号的基因在 ICM 中的表达高于牛胚胎的滋养外胚层,这导致了 CCL24 参与 ICM 的空间组织的假设。从时间上看,CCL24 在牛胚胎中的表达与囊胚形成同时发生:在晚期桑椹胚阶段,转录丰度较低,在发育第 7 天的囊胚中达到高峰,并在第 9 天下降。用两种单独的 C-C 基序趋化因子受体 3 (CCL24 的典型受体) 拮抗剂处理胚胎,降低了位于 ICM 外部的 GATA6+细胞(下胚层前体)的百分比。同样,用 CCL24 特异性的 morpholino 注射胚胎,也降低了 ICM 外部的 GATA6+细胞的百分比。总之,CCL24 有助于牛胚胎中 ICM 的空间排列。该实验指出了趋化因子信号在牛胚胎中的新功能,并且与细胞迁移参与囊胚中下胚层细胞的空间组织的观点一致。