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植物核糖体图谱分析。

Ribosome Profiling of Plants.

机构信息

Plant Pathology, Entomology & Microbiology Department, Iowa State University, Ames, IA, USA.

Molecular, Cellular & Developmental Biology, Iowa State University, Ames, IA, USA.

出版信息

Methods Mol Biol. 2024;2724:139-163. doi: 10.1007/978-1-0716-3485-1_11.

DOI:10.1007/978-1-0716-3485-1_11
PMID:37987904
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11158114/
Abstract

Translation is a key step in control of gene expression, yet most analyses of global responses to a stimulus focus on transcription and the transcriptome. For RNA viruses in particular, which have no DNA-templated transcriptional control, control of viral and host translation is crucial. Here, we describe the method of ribosome profiling (ribo-seq) in plants, applied to virus infection. Ribo-seq is a deep sequencing technique that reveals the translatome by presenting a snapshot of the positions and relative amounts of translating ribosomes on all mRNAs in the cell. In contrast to RNA-seq, a crude cell extract is first digested with ribonuclease to degrade all mRNA not protected by a translating 80S ribosome. The resulting ribosome-protected fragments (RPFs) are deep sequenced. The number of reads mapping to a specific mRNA compared to the standard RNA-seq reads reveals the translational efficiency of that mRNA. Moreover, the precise positions of ribosome pause sites, previously unknown translatable open reading frames, and noncanonical translation events can be characterized quantitatively using ribo-seq. As this technique requires meticulous technique, here we present detailed step-by-step instructions for cell lysate preparation by flash freezing of samples, nuclease digestion of cell lysate, monosome collection by sucrose cushion ultracentrifugation, size-selective RNA extraction and rRNA depletion, library preparation for sequencing and finally quality control of sequenced data. These experimental methods apply to many plant systems, with minor nuclease digestion modifications depending on the plant tissue and species. This protocol should be valuable for studies of plant virus gene expression, and the global translational response to virus infection, or any other biotic or abiotic stress, by the host plant.

摘要

翻译是控制基因表达的关键步骤,但大多数对刺激的全局反应的分析都集中在转录和转录组上。对于没有 DNA 模板转录控制的 RNA 病毒来说,病毒和宿主翻译的控制至关重要。在这里,我们描述了核糖体图谱(ribo-seq)在植物中的方法,该方法应用于病毒感染。核糖体图谱是一种深度测序技术,通过呈现细胞中所有 mRNA 上翻译核糖体的位置和相对丰度的快照,揭示了翻译组。与 RNA-seq 不同,粗细胞提取物首先用核糖核酸酶消化,以降解未被翻译的 80S 核糖体保护的所有 mRNA。产生的核糖体保护片段(RPF)被深度测序。与标准 RNA-seq 读数相比,映射到特定 mRNA 的读数数量揭示了该 mRNA 的翻译效率。此外,核糖体暂停位点、以前未知的可翻译开放阅读框和非规范翻译事件的精确位置可以使用核糖体图谱进行定量表征。由于该技术需要细致的技术,因此在这里我们提供了详细的分步说明,用于通过样品的闪光冷冻制备细胞裂解物、细胞裂解物的核酸酶消化、通过蔗糖垫超速离心收集单体、大小选择性 RNA 提取和 rRNA 耗尽、用于测序的文库制备以及最后对测序数据进行质量控制。这些实验方法适用于许多植物系统,只需根据植物组织和物种进行少量核酸酶消化修饰。该方案对于研究植物病毒基因表达以及宿主植物对病毒感染或任何其他生物或非生物胁迫的全局翻译反应应该是有价值的。

相似文献

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Ribosome Profiling of Plants.植物核糖体图谱分析。
Methods Mol Biol. 2024;2724:139-163. doi: 10.1007/978-1-0716-3485-1_11.
2
Ribosome profiling in plants: what is not lost in translation?植物中的核糖体谱分析:翻译过程中丢失了什么?
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Genome-wide translational profiling by ribosome footprinting.通过核糖体足迹法进行全基因组翻译谱分析。
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A Ribo-Seq Method to Study Genome-Wide Translational Regulation in Plants.一种用于研究植物全基因组翻译调控的核糖体图谱测序方法。
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HRPDviewer: human ribosome profiling data viewer.HRPDviewer:人类核糖体分析数据浏览器。
Database (Oxford). 2018 Jan 1;2018. doi: 10.1093/database/bay074.

本文引用的文献

1
Variational inference for detecting differential translation in ribosome profiling studies.核糖体谱分析研究中用于检测差异翻译的变分推断
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PABP/purine-rich motif as an initiation module for cap-independent translation in pattern-triggered immunity.PABP/嘌呤丰富基序作为模式触发免疫中无帽依赖翻译的起始模块。
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Control of translation during the unfolded protein response in maize seedlings: Life without PERKs.玉米幼苗未折叠蛋白反应过程中的翻译调控:无PERKs的生活
Plant Direct. 2020 Jul 30;4(7):e00241. doi: 10.1002/pld3.241. eCollection 2020 Jul.
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Ribosome profiling in plants: what is not lost in translation?植物中的核糖体谱分析:翻译过程中丢失了什么?
J Exp Bot. 2020 Sep 19;71(18):5323-5332. doi: 10.1093/jxb/eraa227.
6
RiboToolkit: an integrated platform for analysis and annotation of ribosome profiling data to decode mRNA translation at codon resolution.RiboToolkit:一个集成的平台,用于分析和注释核糖体图谱数据,以密码子分辨率解码 mRNA 翻译。
Nucleic Acids Res. 2020 Jul 2;48(W1):W218-W229. doi: 10.1093/nar/gkaa395.
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8
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Nucleic Acids Res. 2020 Jan 24;48(2):e7. doi: 10.1093/nar/gkz1074.
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Computational methods for ribosome profiling data analysis.核糖体图谱数据分析的计算方法。
Wiley Interdiscip Rev RNA. 2020 May;11(3):e1577. doi: 10.1002/wrna.1577. Epub 2019 Nov 24.
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Characterization of maize translational responses to sugarcane mosaic virus infection.玉米对甘蔗花叶病毒感染的翻译应答的特征分析。
Virus Res. 2019 Jan 2;259:97-107. doi: 10.1016/j.virusres.2018.10.013. Epub 2018 Oct 21.