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全长直接RNA测序揭示细胞应激时应激颗粒依赖性RNA衰变。

Full-length direct RNA sequencing uncovers stress granule-dependent RNA decay upon cellular stress.

作者信息

Dar Showkat Ahmad, Malla Sulochan, Martinek Vlastimil, Payea Matthew John, Lee Christopher Tai-Yi, Martin Jessica, Khandeshi Aditya Jignesh, Martindale Jennifer L, Belair Cedric, Maragkakis Manolis

机构信息

Laboratory of Genetics and Genomics, National Institute on Aging, Intramural Research Program, National Institutes of Health, Baltimore, United States.

Central European Institute of Technology, Masaryk University, Brno, Czech Republic.

出版信息

Elife. 2024 Dec 19;13:RP96284. doi: 10.7554/eLife.96284.

Abstract

Cells react to stress by triggering response pathways, leading to extensive alterations in the transcriptome to restore cellular homeostasis. The role of RNA metabolism in shaping the cellular response to stress is vital, yet the global changes in RNA stability under these conditions remain unclear. In this work, we employ direct RNA sequencing with nanopores, enhanced by 5' end adapter ligation, to comprehensively interrogate the human transcriptome at single-molecule and -nucleotide resolution. By developing a statistical framework to identify robust RNA length variations in nanopore data, we find that cellular stress induces prevalent 5' end RNA decay that is coupled to translation and ribosome occupancy. Unlike typical RNA decay models in normal conditions, we show that stress-induced RNA decay is dependent on XRN1 but does not depend on deadenylation or decapping. We observed that RNAs undergoing decay are predominantly enriched in the stress granule transcriptome while inhibition of stress granule formation via genetic ablation of G3BP1 and G3BP2 rescues RNA length. Our findings reveal RNA decay as a key component of RNA metabolism upon cellular stress that is dependent on stress granule formation.

摘要

细胞通过触发反应途径对压力作出反应,导致转录组发生广泛变化以恢复细胞内稳态。RNA代谢在塑造细胞对压力的反应中起着至关重要的作用,但在这些条件下RNA稳定性的全局变化仍不清楚。在这项工作中,我们采用通过5'端衔接子连接增强的纳米孔直接RNA测序,以单分子和单核苷酸分辨率全面研究人类转录组。通过开发一个统计框架来识别纳米孔数据中稳健的RNA长度变化,我们发现细胞应激诱导普遍的5'端RNA衰变,这与翻译和核糖体占据相关。与正常条件下的典型RNA衰变模型不同,我们表明应激诱导的RNA衰变依赖于XRN1,但不依赖于去腺苷酸化或脱帽。我们观察到正在衰变的RNA主要富集在应激颗粒转录组中,而通过基因敲除G3BP1和G3BP2抑制应激颗粒形成可挽救RNA长度。我们的研究结果揭示了RNA衰变是细胞应激时RNA代谢的关键组成部分,其依赖于应激颗粒的形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3fde/11658763/459f98f7f435/elife-96284-fig1.jpg

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