Wang Q Tian, Piotrowska Karolina, Ciemerych Maria Anna, Milenkovic Ljiljana, Scott Matthew P, Davis Ronald W, Zernicka-Goetz Magdalena
Department of Biochemistry and Howard Hughes Medical Institute, Stanford University School of Medicine, Stanford, CA 94305, USA.
Dev Cell. 2004 Jan;6(1):133-44. doi: 10.1016/s1534-5807(03)00404-0.
The preimplantation development of the mammalian embryo encompasses a series of critical events: the transition from oocyte to embryo, the first cell divisions, the establishment of cellular contacts, the first lineage differentiation-all the first subtle steps toward a future body plan. Here, we use microarrays to explore gene activity during preimplantation development. We reveal robust and dynamic patterns of stage-specific gene activity that fall into two major phases, one up to the 2-cell stage (oocyte-to-embryo transition) and one after the 4-cell stage (cellular differentiation). The mouse oocyte and early embryo express components of multiple signaling pathways including those downstream of Wnt, BMP, and Notch, indicating that conserved regulators of cell fate and pattern formation are likely to function at the earliest embryonic stages. Overall, these data provide a detailed temporal profile of gene expression that reveals the richness of signaling processes in early mammalian development.
从卵母细胞到胚胎的转变、最初的细胞分裂、细胞间接触的建立、第一次谱系分化——所有这些都是迈向未来身体蓝图的最初微妙步骤。在此,我们使用微阵列来探索植入前发育过程中的基因活性。我们揭示了阶段特异性基因活性的强大而动态的模式,这些模式分为两个主要阶段,一个阶段直至2细胞期(从卵母细胞到胚胎的转变),另一个阶段在4细胞期之后(细胞分化)。小鼠卵母细胞和早期胚胎表达多种信号通路的组成部分,包括Wnt、BMP和Notch下游的那些信号通路,这表明细胞命运和模式形成的保守调节因子可能在胚胎发育的最早阶段发挥作用。总体而言,这些数据提供了基因表达的详细时间概况,揭示了早期哺乳动物发育中信号传导过程的丰富性。