生物
细胞生物学
基因表达
转录调控
染色质
基因表达调控
信使核糖核酸
基因
核糖核酸
心理压抑
转录因子
遗传学
作者
Bingnan Li,Patrice Zeis,Yujie Zhang,Alisa Alekseenko,Eliška Fürst,Yerma Pareja Sanchez,Gen Lin,Manu M. Tekkedil,Ilaria Piazza,Lars M. Steinmetz,Vicent Pelechano
标识
DOI:10.1038/s41467-023-36586-x
摘要
Abstract Transcriptional memory, by which cells respond faster to repeated stimuli, is key for cellular adaptation and organism survival. Chromatin organization has been shown to play a role in the faster response of primed cells. However, the contribution of post-transcriptional regulation is not yet explored. Here we perform a genome-wide screen to identify novel factors modulating transcriptional memory in S. cerevisiae in response to galactose. We find that depletion of the nuclear RNA exosome increases GAL1 expression in primed cells. Our work shows that gene-specific differences in intrinsic nuclear surveillance factor association can enhance both gene induction and repression in primed cells. Finally, we show that primed cells present altered levels of RNA degradation machinery and that both nuclear and cytoplasmic mRNA decay modulate transcriptional memory. Our results demonstrate that mRNA post-transcriptional regulation, and not only transcription regulation, should be considered when investigating gene expression memory.
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