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Mammalian Queuosine tRNA Modification Impacts Translation to Enhance Cell Proliferation and MHC-II Expression.哺乳动物的反密码子第34位的稀有碱基Q修饰影响翻译过程,从而增强细胞增殖和MHC-II表达。
J Mol Biol. 2025 Aug 15;437(16):169188. doi: 10.1016/j.jmb.2025.169188. Epub 2025 May 6.
2
Detection and quantification of glycosylated queuosine modified tRNAs by acid denaturing and APB gels.酸变性和 APB 凝胶检测和定量糖基化 queuosine 修饰的 tRNAs。
RNA. 2020 Sep;26(9):1291-1298. doi: 10.1261/rna.075556.120. Epub 2020 May 21.
3
Queuosine modification protects cognate tRNAs against ribonuclease cleavage.Queuosine 修饰可保护同功 tRNA 免受核糖核酸酶切割。
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Queuosine-tRNA promotes sex-dependent learning and memory formation by maintaining codon-biased translation elongation speed.Queuosine-tRNA 通过维持密码子偏倚的翻译延伸速度促进性别依赖性学习和记忆形成。
EMBO J. 2023 Oct 4;42(19):e112507. doi: 10.15252/embj.2022112507. Epub 2023 Aug 23.
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Analysis of queuosine and 2-thio tRNA modifications by high throughput sequencing.高通量测序分析 queuosine 和 2-硫代 tRNA 修饰。
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Queuosine tRNA Modification: Connecting the Microbiome to the Translatome.喹喔啉核糖核酸(Q)转运核糖核酸(tRNA)修饰:连接微生物组与翻译组
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Queuosine modification of tRNA: its divergent role in cellular machinery.tRNA 的 Queuosine 修饰:其在细胞机制中的不同作用。
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Queuine: A Bacterial Nucleobase Shaping Translation in Eukaryotes.喹啉:一种塑造真核生物翻译过程的细菌核碱基
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本文引用的文献

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Bioinformatics of simultaneous, quantitative measurements of full-length tRNA and tRNA fragments by MSR sequencing.通过MSR测序对全长tRNA和tRNA片段进行同步定量测量的生物信息学
Methods Enzymol. 2025;711:312-323. doi: 10.1016/bs.mie.2024.11.009. Epub 2024 Nov 22.
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TRMT1L-catalyzed mG27 on tyrosine tRNA is required for efficient mRNA translation and cell survival under oxidative stress.TRMT1L催化的酪氨酸tRNA上的mG27对于氧化应激下的高效mRNA翻译和细胞存活是必需的。
Cell Rep. 2025 Jan 28;44(1):115167. doi: 10.1016/j.celrep.2024.115167. Epub 2025 Jan 8.
3
Human TRMT1 and TRMT1L paralogs ensure the proper modification state, stability, and function of tRNAs.人类TRMT1和TRMT1L旁系同源基因确保了tRNA的正确修饰状态、稳定性和功能。
Cell Rep. 2025 Jan 28;44(1):115092. doi: 10.1016/j.celrep.2024.115092. Epub 2025 Jan 8.
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Queuosine tRNA Modification: Connecting the Microbiome to the Translatome.喹喔啉核糖核酸(Q)转运核糖核酸(tRNA)修饰:连接微生物组与翻译组
Bioessays. 2025 Feb;47(2):e202400213. doi: 10.1002/bies.202400213. Epub 2024 Nov 26.
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A pairwise cytokine code explains the organism-wide response to sepsis.成对细胞因子密码解释了败血症的全身反应。
Nat Immunol. 2024 Feb;25(2):226-239. doi: 10.1038/s41590-023-01722-8. Epub 2024 Jan 8.
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Glycosylated queuosines in tRNAs optimize translational rate and post-embryonic growth.tRNA 中的糖基化 queuosines 优化了翻译速度和胚胎后生长。
Cell. 2023 Dec 7;186(25):5517-5535.e24. doi: 10.1016/j.cell.2023.10.026. Epub 2023 Nov 21.
7
Queuosine-tRNA promotes sex-dependent learning and memory formation by maintaining codon-biased translation elongation speed.Queuosine-tRNA 通过维持密码子偏倚的翻译延伸速度促进性别依赖性学习和记忆形成。
EMBO J. 2023 Oct 4;42(19):e112507. doi: 10.15252/embj.2022112507. Epub 2023 Aug 23.
8
Structural basis of Qng1-mediated salvage of the micronutrient queuine from queuosine-5'-monophosphate as the biological substrate.Qng1 介导从 queuosine-5'-monophosphate 中回收生物底物 queuine 的结构基础。
Nucleic Acids Res. 2023 Jan 25;51(2):935-951. doi: 10.1093/nar/gkac1231.
9
Analysis of queuosine and 2-thio tRNA modifications by high throughput sequencing.高通量测序分析 queuosine 和 2-硫代 tRNA 修饰。
Nucleic Acids Res. 2022 Sep 23;50(17):e99. doi: 10.1093/nar/gkac517.
10
A multiplex platform for small RNA sequencing elucidates multifaceted tRNA stress response and translational regulation.一种用于小 RNA 测序的多重平台阐明了多方面的 tRNA 应激反应和翻译调控。
Nat Commun. 2022 May 5;13(1):2491. doi: 10.1038/s41467-022-30261-3.

哺乳动物的反密码子第34位的稀有碱基Q修饰影响翻译过程,从而增强细胞增殖和MHC-II表达。

Mammalian Queuosine tRNA Modification Impacts Translation to Enhance Cell Proliferation and MHC-II Expression.

作者信息

Zbihley Olivia N P, Johnson Katherine, Frietze Luke R, Zhang Wen, Foo Marcus, Tran Hoang Anh V, Chevrier Nicolas, Pan Tao

机构信息

Department of Biochemistry and Molecular Biology, University of Chicago, Chicago, IL 60637, USA.

Pritzker School of Molecular Engineering, University of Chicago, Chicago, IL 60637, USA.

出版信息

J Mol Biol. 2025 Aug 15;437(16):169188. doi: 10.1016/j.jmb.2025.169188. Epub 2025 May 6.

DOI:10.1016/j.jmb.2025.169188
PMID:40339980
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC12162204/
Abstract

Queuosine (Q) is a conserved tRNA modification in the wobble anticodon position of tRNAs that read codons of Tyr/His/Asn/Asp. Eukaryotic tRNA Q-modification requires the metabolite queuine - derived from diet or catabolism of the gut microbiome - and a host-genome encoded enzyme complex, QTRT1/QTRT2. tRNA Q-modification has been shown to regulate translational efficiency, but the response of the mammalian transcriptome and tRNAome to tRNA Q-modification in the context of cell proliferation has not been thoroughly investigated. Using cells that differ only in their tRNA Q-modification levels, we found that both human HEK293T cultures and the primary, murine bone marrow-derived dendritic cells (BMDCs) proliferate faster when tRNA Q-modification level is high. We carried out tRNA-seq and mRNA-seq to elucidate the molecular mechanisms underlying this phenotype, revealing distinct tRNA modification and transcriptome changes associated with altered proliferation. In both cell types, the mG tRNA modification is positively correlated to Q-modification, consistent with its reported role in enhancing translational efficiency. We also find that elevated Q-modification levels result in transcriptome changes, but in a context-dependent manner. In HEK293T cells, upregulated genes are in catabolic processes and signaling pathway activation; whereas in BMDCs, upregulated genes are in immune response mediation, proliferation, and immunoglobulin diversification. Codon usage analysis of differentially expressed transcripts is consistent with Q-modification enhancing the translation of ribosomal proteins, which increases cell proliferation. We also find that tRNA Q-modification increases surface presentation of MHC-II in BMDCs. Our results provide insights into the broader implications of tRNA Q-modifications in regulating diverse biological functions.

摘要

Queuosine (Q)是一种保守的tRNA修饰,存在于读取酪氨酸(Tyr)/组氨酸(His)/天冬酰胺(Asn)/天冬氨酸(Asp)密码子的tRNA的摆动反密码子位置。真核生物tRNA的Q修饰需要代谢物queuine(来源于饮食或肠道微生物群的分解代谢)以及宿主基因组编码的酶复合物QTRT1/QTRT2。tRNA的Q修饰已被证明可调节翻译效率,但在细胞增殖背景下,哺乳动物转录组和tRNA组对tRNA Q修饰的反应尚未得到充分研究。使用仅tRNA Q修饰水平不同的细胞,我们发现当tRNA Q修饰水平较高时,人类HEK293T细胞培养物以及原代小鼠骨髓来源的树突状细胞(BMDC)增殖更快。我们进行了tRNA测序和mRNA测序,以阐明这种表型背后的分子机制,揭示与增殖改变相关的独特tRNA修饰和转录组变化。在这两种细胞类型中,mG tRNA修饰与Q修饰呈正相关,这与其在提高翻译效率方面的报道作用一致。我们还发现,Q修饰水平升高会导致转录组变化,但具有背景依赖性。在HEK293T细胞中,上调的基因参与分解代谢过程和信号通路激活;而在BMDC中,上调的基因参与免疫反应介导、增殖和免疫球蛋白多样化。对差异表达转录本的密码子使用分析与Q修饰增强核糖体蛋白的翻译一致,这会增加细胞增殖。我们还发现tRNA Q修饰增加了BMDC中MHC-II的表面呈现。我们的结果为tRNA Q修饰在调节多种生物学功能方面的更广泛意义提供了见解。