Department of Chemical and Biomolecular Engineering, University of Pennsylvania, Philadelphia, PA 19104.
Lewis-Sigler Institute for Integrative Genomics, Princeton University, Princeton, NJ 08544.
Proc Natl Acad Sci U S A. 2021 Apr 6;118(14). doi: 10.1073/pnas.2010210118.
Early embryos must rapidly generate large numbers of cells to form an organism. Many species accomplish this through a series of rapid, reductive, and transcriptionally silent cleavage divisions. Previous work has demonstrated that the number of divisions before both cell cycle elongation and zygotic genome activation (ZGA) is regulated by the ratio of nuclear content to cytoplasm (N/C). To understand how the N/C ratio affects the timing of ZGA, we directly assayed the behavior of several previously identified N/C ratio-dependent genes using the MS2-MCP reporter system in living embryos with altered ploidy and cell cycle durations. For every gene that we examined, we found that nascent RNA output per cycle is delayed in haploid embryos. Moreover, we found that the N/C ratio influences transcription through three overlapping modes of action. For some genes (, , and ), the effect of ploidy can be primarily attributed to changes in cell cycle duration. However, additional N/C ratio-mediated mechanisms contribute significantly to transcription delays for other genes. For and the kinetics of transcription activation are significantly disrupted in haploids, while for and , the N/C ratio controls the probability of transcription initiation. Our data demonstrate that the regulatory elements of N/C ratio-dependent genes respond directly to the N/C ratio through multiple modes of regulation.
早期胚胎必须迅速产生大量的细胞来形成一个生物体。许多物种通过一系列快速、还原和转录沉默的分裂来实现这一目标。以前的工作表明,细胞周期延长和合子基因组激活(ZGA)之前的分裂次数受核质比(N/C)的调节。为了了解 N/C 比率如何影响 ZGA 的时间,我们使用 MS2-MCP 报告系统,在具有改变的倍性和细胞周期持续时间的活体胚胎中,直接检测了几个先前确定的 N/C 比率依赖性基因的行为。对于我们检查的每个基因,我们发现每个周期的新生 RNA 输出都在单倍体胚胎中延迟。此外,我们发现 N/C 比率通过三种重叠的作用模式影响转录。对于某些基因(、和),倍性的影响主要归因于细胞周期持续时间的变化。然而,其他基因的转录延迟还与 N/C 比率介导的机制显著相关。对于和,转录激活的动力学在单倍体中受到严重破坏,而对于和,N/C 比率控制转录起始的概率。我们的数据表明,N/C 比率依赖性基因的调节元件通过多种调节模式直接响应 N/C 比率。