Department of Cell and Developmental Biology, Penn Epigenetics Institute, Perelman School of Medicine, University of Pennsylvania, Philadelphia, United States.
Elife. 2022 Mar 15;11:e63404. doi: 10.7554/eLife.63404.
Cellular ability to mount an enhanced transcriptional response upon repeated exposure to external cues is termed transcriptional memory, which can be maintained epigenetically through cell divisions and can depend on a nuclear pore component Nup98. The majority of mechanistic knowledge on transcriptional memory has been derived from bulk molecular assays. To gain additional perspective on the mechanism and contribution of Nup98 to memory, we used single-molecule RNA FISH (smFISH) to examine the dynamics of transcription in cells upon repeated exposure to the steroid hormone ecdysone. We combined smFISH with mathematical modeling and found that upon hormone exposure, cells rapidly activate a low-level transcriptional response, but simultaneously begin a slow transition into a specialized memory state characterized by a high rate of expression. Strikingly, our modeling predicted that this transition between non-memory and memory states is independent of the transcription stemming from initial activation. We confirmed this prediction experimentally by showing that inhibiting transcription during initial ecdysone exposure did not interfere with memory establishment. Together, our findings reveal that Nup98's role in transcriptional memory is to stabilize the forward rate of conversion from low to high expressing state, and that induced genes engage in two separate behaviors - transcription itself and the establishment of epigenetically propagated transcriptional memory.
细胞在反复暴露于外部刺激时能够增强转录反应的能力被称为转录记忆,这种记忆可以通过细胞分裂在表观遗传上得以维持,并可能依赖于核孔成分 Nup98。关于转录记忆的大多数机制知识都是从批量分子检测中得出的。为了更深入地了解 Nup98 对记忆的机制和贡献,我们使用单分子 RNA FISH(smFISH)技术来研究 细胞在反复暴露于蜕皮激素等类固醇激素后转录的动态变化。我们将 smFISH 与数学建模相结合,发现细胞在激素暴露后会迅速激活低水平的转录反应,但同时开始缓慢转变为一种特殊的记忆状态,其特征是高表达率。引人注目的是,我们的模型预测,这种非记忆和记忆状态之间的转变与初始激活产生的转录无关。我们通过实验证实了这一预测,即在初始蜕皮激素暴露时抑制转录不会干扰记忆的建立。总之,我们的研究结果表明,Nup98 在转录记忆中的作用是稳定从低表达状态向高表达状态的正向转化率,并且诱导基因表现出两种不同的行为——转录本身和表观遗传传播的转录记忆的建立。