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代谢标记 RNA 揭示了转录和降解速率对缺氧诱导的 RNA 水平变化的贡献。

Metabolic labeling of RNA uncovers the contribution of transcription and decay rates on hypoxia-induced changes in RNA levels.

机构信息

Departamento de Bioquímica, Universidad Autónoma de Madrid (UAM) and Instituto de Investigaciones Biomédicas "Alberto Sols" (CSIC-UAM), 28029 Madrid, Spain.

IdiPaz, Instituto de Investigación Sanitaria del Hospital Universitario La Paz, 28029 Madrid, Spain.

出版信息

RNA. 2020 Aug;26(8):1006-1022. doi: 10.1261/rna.072611.119. Epub 2020 Apr 15.

DOI:10.1261/rna.072611.119
PMID:32295863
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7373995/
Abstract

Cells adapt to environmental changes, including fluctuations in oxygen levels, through the induction of specific gene expression programs. However, most transcriptomic studies do not distinguish the relative contribution of transcription, RNA processing, and RNA degradation processes to cellular homeostasis. Here we used metabolic labeling followed by massive parallel sequencing of newly transcribed and preexisting RNA fractions to simultaneously analyze RNA synthesis and decay in primary endothelial cells exposed to low oxygen tension. We found that changes in transcription rates induced by hypoxia are the major determinant of changes in RNA levels. However, degradation rates also had a significant contribution, accounting for 24% of the observed variability in total mRNA. In addition, our results indicated that hypoxia led to a reduction of the overall mRNA stability from a median half-life in normoxia of 8.7 h, to 5.7 h in hypoxia. Analysis of RNA content per cell confirmed a decrease of both mRNA and total RNA in hypoxic samples and that this effect is dependent on the EGLN/HIF/TSC2 axis. This effect could potentially contribute to fundamental global responses such as inhibition of translation in hypoxia. In summary, our study provides a quantitative analysis of the contribution of RNA synthesis and stability to the transcriptional response to hypoxia and uncovers an unexpected effect on the latter.

摘要

细胞通过诱导特定的基因表达程序来适应环境变化,包括氧气水平的波动。然而,大多数转录组学研究并没有区分转录、RNA 处理和 RNA 降解过程对细胞内稳态的相对贡献。在这里,我们使用代谢标记和大规模平行测序新转录和预先存在的 RNA 分数,同时分析暴露于低氧张力下的原代内皮细胞中的 RNA 合成和降解。我们发现,低氧诱导的转录率变化是 RNA 水平变化的主要决定因素。然而,降解率也有显著的贡献,占总 mRNA 观察到的可变性的 24%。此外,我们的结果表明,低氧导致整体 mRNA 稳定性降低,从中性氧时的中位数半衰期 8.7 小时降低到低氧时的 5.7 小时。每个细胞的 RNA 含量分析证实了低氧样本中 mRNA 和总 RNA 的减少,并且这种效应依赖于 EGLN/HIF/TSC2 轴。这种效应可能有助于基本的全局反应,如低氧抑制翻译。总之,我们的研究提供了对 RNA 合成和稳定性对低氧转录反应的贡献的定量分析,并揭示了对后者的意外影响。

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1
Ribosome Abundance Control Via the Ubiquitin-Proteasome System and Autophagy.核糖体丰度通过泛素-蛋白酶体系统和自噬来控制。
J Mol Biol. 2020 Jan 3;432(1):170-184. doi: 10.1016/j.jmb.2019.06.001. Epub 2019 Jun 11.
2
Histone demethylase KDM6A directly senses oxygen to control chromatin and cell fate.组蛋白去甲基化酶 KDM6A 直接感知氧气以控制染色质和细胞命运。
Science. 2019 Mar 15;363(6432):1217-1222. doi: 10.1126/science.aaw1026. Epub 2019 Mar 14.
3
mTOR as a central hub of nutrient signalling and cell growth.mTOR 作为营养信号和细胞生长的中央枢纽。
Int J Mol Sci. 2024 Apr 13;25(8):4315. doi: 10.3390/ijms25084315.
4
Hypoxia-driven deSUMOylation of EXOSC10 promotes adaptive changes in the transcriptome profile.缺氧驱动的EXOSC10去SUMO化促进转录组图谱的适应性变化。
Cell Mol Life Sci. 2024 Jan 27;81(1):58. doi: 10.1007/s00018-023-05035-9.
5
Transcript accumulation rates in the early embryo.早期胚胎的转录本积累率。
Sci Adv. 2023 Aug 25;9(34):eadi1270. doi: 10.1126/sciadv.adi1270. Epub 2023 Aug 23.
6
Formal Meta-Analysis of Hypoxic Gene Expression Profiles Reveals a Universal Gene Signature.缺氧基因表达谱的正式荟萃分析揭示了一个通用基因特征。
Biomedicines. 2022 Sep 8;10(9):2229. doi: 10.3390/biomedicines10092229.
7
Regulation of both transcription and RNA turnover contribute to germline specification.转录和 RNA 周转的调控都有助于生殖细胞的特化。
Nucleic Acids Res. 2022 Jul 22;50(13):7310-7325. doi: 10.1093/nar/gkac542.
8
Functional RNA Dynamics Are Progressively Governed by RNA Destabilization during the Adaptation to Chronic Hypoxia.在适应慢性缺氧过程中,RNA 不稳定性逐渐控制功能性 RNA 动力学。
Int J Mol Sci. 2022 May 22;23(10):5824. doi: 10.3390/ijms23105824.
9
PABP prevents the untimely decay of select mRNA populations in human cells.PABP 防止了人类细胞中特定 mRNA 群体的过早降解。
EMBO J. 2022 Mar 15;41(6):e108650. doi: 10.15252/embj.2021108650. Epub 2022 Feb 14.
10
Systems approaches to understand oxygen sensing: how multi-omics has driven advances in understanding oxygen-based signalling.系统方法研究氧感应:多组学如何推动氧相关信号转导的研究进展。
Biochem J. 2022 Feb 11;479(3):245-257. doi: 10.1042/BCJ20210554.
Nat Cell Biol. 2019 Jan;21(1):63-71. doi: 10.1038/s41556-018-0205-1. Epub 2019 Jan 2.
4
Transcriptional Profiling of Hypoxia-Regulated Non-coding RNAs in Human Primary Endothelial Cells.人原代内皮细胞中缺氧调节的非编码RNA的转录谱分析
Front Cardiovasc Med. 2018 Nov 5;5:159. doi: 10.3389/fcvm.2018.00159. eCollection 2018.
5
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EMBO Rep. 2019 Jan;20(1). doi: 10.15252/embr.201846401. Epub 2018 Nov 14.
6
NUFIP1 is a ribosome receptor for starvation-induced ribophagy.NUFIP1 是饥饿诱导的核糖体自噬的核糖体受体。
Science. 2018 May 18;360(6390):751-758. doi: 10.1126/science.aar2663. Epub 2018 Apr 26.
7
ZMYND8 acetylation mediates HIF-dependent breast cancer progression and metastasis.ZMYND8 乙酰化介导 HIF 依赖性乳腺癌的进展和转移。
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8
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Nat Cell Biol. 2018 Feb;20(2):135-143. doi: 10.1038/s41556-017-0007-x. Epub 2017 Dec 11.
9
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10
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Nucleic Acids Res. 2018 Jan 9;46(1):120-133. doi: 10.1093/nar/gkx951.