Jowhar Ziad, Xu Albert, Venkataramanan Srivats, Dossena Francesco, Hoye Mariah L, Silver Debra L, Floor Stephen N, Calviello Lorenzo
Department of Cell and Tissue Biology, UCSF, San Francisco, United States.
Medical Scientist Training Program, University of California, San Francisco, San Francisco, CA 94158, USA.
bioRxiv. 2023 Nov 23:2023.05.11.540322. doi: 10.1101/2023.05.11.540322.
The road from transcription to protein synthesis is paved with many obstacles, allowing for several modes of post-transcriptional regulation of gene expression. A fundamental player in mRNA biology is DDX3X, an RNA binding protein that canonically regulates mRNA translation. By monitoring dynamics of mRNA abundance and translation following DDX3X depletion, we observe stabilization of translationally suppressed mRNAs. We use interpretable statistical learning models to uncover GC content in the coding sequence as the major feature underlying RNA stabilization. This result corroborates GC content-related mRNA regulation detectable in other studies, including hundreds of ENCODE datasets and recent work focusing on mRNA dynamics in the cell cycle. We provide further evidence for mRNA stabilization by detailed analysis of RNA-seq profiles in hundreds of samples, including a conditional knockout mouse model exhibiting cell cycle and neurogenesis defects. Our study identifies a ubiquitous feature underlying mRNA regulation and highlights the importance of quantifying multiple steps of the gene expression cascade, where RNA abundance and protein production are often uncoupled.
从转录到蛋白质合成的道路上布满了许多障碍,这使得基因表达的转录后调控存在多种模式。DDX3X是mRNA生物学中的一个重要角色,它是一种RNA结合蛋白,通常对mRNA翻译起调控作用。通过监测DDX3X缺失后mRNA丰度和翻译的动态变化,我们观察到翻译受抑制的mRNA得到了稳定。我们使用可解释的统计学习模型来揭示编码序列中的GC含量是RNA稳定的主要特征。这一结果证实了在其他研究中可检测到的与GC含量相关的mRNA调控,包括数百个ENCODE数据集以及最近关注细胞周期中mRNA动态变化的研究。我们通过对数百个样本的RNA-seq图谱进行详细分析,包括一个表现出细胞周期和神经发生缺陷的条件性敲除小鼠模型,为mRNA稳定提供了进一步的证据。我们的研究确定了mRNA调控的一个普遍特征,并强调了量化基因表达级联多个步骤的重要性,在这些步骤中,RNA丰度和蛋白质产生往往是不相关的。