Molecular Medicine Program, The Hospital for Sick Children Research Institute, Toronto, Canada.
Department of Molecular Genetics, University of Toronto, Toronto, Canada.
Elife. 2017 Sep 6;6:e27891. doi: 10.7554/eLife.27891.
In animal embryos, control of development is passed from exclusively maternal gene products to those encoded by the embryonic genome in a process referred to as the maternal-to-zygotic transition (MZT). We show that the RNA-binding protein, ME31B, binds to and represses the expression of thousands of maternal mRNAs during the MZT. However, ME31B carries out repression in different ways during different phases of the MZT. Early, it represses translation while, later, its binding leads to mRNA destruction, most likely as a consequence of translational repression in the context of robust mRNA decay. In a process dependent on the PNG kinase, levels of ME31B and its partners, Cup and Trailer Hitch (TRAL), decrease by over 10-fold during the MZT, leading to a change in the composition of mRNA-protein complexes. We propose that ME31B is a global repressor whose regulatory impact changes based on its biological context.
在动物胚胎中,发育的控制从完全由母体基因产物传递到胚胎基因组编码的基因产物,这一过程被称为母源至合子过渡(MZT)。我们发现,RNA 结合蛋白 ME31B 在 MZT 过程中结合并抑制数千个母体 mRNA 的表达。然而,ME31B 在 MZT 的不同阶段以不同的方式进行抑制。早期,它抑制翻译,而后期,它的结合导致 mRNA 破坏,这很可能是由于在强大的 mRNA 降解背景下的翻译抑制。在一个依赖于 PNG 激酶的过程中,ME31B 及其伴侣 Cup 和 Trailer Hitch(TRAL)的水平在 MZT 期间下降超过 10 倍,导致 mRNA-蛋白质复合物的组成发生变化。我们提出 ME31B 是一种全局抑制剂,其调节作用基于其生物学背景而变化。