Department of Biochemistry and Biophysics, University of California at San Francisco, San Francisco, California 94143, USA.
Genes Dev. 2019 Apr 1;33(7-8):403-417. doi: 10.1101/gad.321646.118. Epub 2019 Feb 26.
Acquisition of chromatin modifications during embryogenesis distinguishes different regions of an initially naïve genome. In many organisms, repetitive DNA is packaged into constitutive heterochromatin that is marked by di/trimethylation of histone H3K9 and the associated protein HP1a. These modifications enforce the unique epigenetic properties of heterochromatin. However, in the early embryo, the heterochromatin lacks these modifications, which appear only later, when rapid embryonic cell cycles slow down at the midblastula transition (MBT). Here we focus on the initial steps restoring heterochromatic modifications in the embryo. We describe the JabbaTrap, a technique for inactivating maternally provided proteins in embryos. Using the JabbaTrap, we reveal a major requirement for the methyltransferase Eggless/SetDB1 in the establishment of heterochromatin. In contrast, other methyltransferases contribute minimally. Live imaging reveals that endogenous Eggless gradually accumulates on chromatin in interphase but then dissociates in mitosis, and its accumulation must restart in the next cell cycle. Cell cycle slowing as the embryo approaches the MBT permits increasing accumulation and action of Eggless at its targets. Experimental manipulation of interphase duration shows that cell cycle speed regulates Eggless. We propose that developmental slowing of the cell cycle times embryonic heterochromatin formation.
胚胎发生过程中染色质修饰的获取将初始幼稚基因组的不同区域区分开来。在许多生物体中,重复 DNA 被包装成组成型异染色质,其特征是组蛋白 H3K9 的二甲基化/三甲基化和相关蛋白 HP1a。这些修饰赋予异染色质独特的表观遗传特性。然而,在早期胚胎中,异染色质缺乏这些修饰,这些修饰仅在快速胚胎细胞周期在中胚层转变(MBT)时减缓后才出现。在这里,我们专注于恢复胚胎中异染色质修饰的初始步骤。我们描述了 JabbaTrap,这是一种在胚胎中使母源提供的蛋白质失活的技术。使用 JabbaTrap,我们揭示了甲基转移酶 Eggless/SetDB1 在建立异染色质方面的主要要求。相比之下,其他甲基转移酶的贡献很小。活细胞成像显示,内源性 Eggless 逐渐在有丝分裂间期积累在染色质上,但随后在有丝分裂中解离,其积累必须在下一个细胞周期中重新开始。随着胚胎接近 MBT,细胞周期减缓允许 Eggless 在其靶标上逐渐积累并发挥作用。对有丝分裂期持续时间的实验操作表明,细胞周期速度调节 Eggless。我们提出,细胞周期的发育减缓时间决定了胚胎异染色质的形成。