Department of Molecular Biosciences, Northwestern University, Evanston, United States.
Program in Interdisciplinary Biological Sciences, Northwestern University, Evanston, United States.
Elife. 2020 Apr 29;9:e53916. doi: 10.7554/eLife.53916.
Because chromatin determines whether information encoded in DNA is accessible to transcription factors, dynamic chromatin states in development may constrain how gene regulatory networks impart embryonic pattern. To determine the interplay between chromatin states and regulatory network function, we performed ATAC-seq on embryos during the establishment of the segmentation network, comparing wild-type and mutant embryos in which all graded maternal patterning inputs are eliminated. While during the period between zygotic genome activation and gastrulation many regions maintain stable accessibility, cis-regulatory modules (CRMs) within the network undergo extensive patterning-dependent changes in accessibility. A component of the network, Odd-paired (), is necessary for pioneering accessibility of late segmentation network CRMs. driven changes in accessibility are accompanied by equivalent changes in gene expression. Interfering with the timing of activity impacts the proper patterning of expression. These results indicate that dynamic systems for chromatin regulation directly impact the reading of embryonic patterning information.
由于染色质决定了 DNA 中编码的信息是否能被转录因子所访问,因此在发育过程中动态的染色质状态可能会限制基因调控网络赋予胚胎模式的方式。为了确定染色质状态与调控网络功能之间的相互作用,我们在胚胎建立体节网络的过程中对胚胎进行了 ATAC-seq 分析,比较了消除所有分级母体模式输入的野生型和突变型胚胎。虽然在合子基因组激活和原肠胚形成之间的时期,许多区域保持稳定的可及性,但网络内的顺式调控模块(CRMs)经历了广泛的与图案相关的可及性变化。该网络的一个组成部分,Odd-paired (),对于晚期体节网络 CRM 的开拓性可及性是必需的。 由 驱动的可及性变化伴随着基因表达的等效变化。干扰 的活性时间会影响表达的正确模式。这些结果表明,染色质调节的动态系统直接影响对胚胎模式信息的解读。