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核糖体暂停在玉米幼苗暗至光转变过程中负调控蛋白质翻译。

Ribosome Pausing Negatively Regulates Protein Translation in Maize Seedlings during Dark-to-Light Transitions.

机构信息

Shenzhen Branch, Guangdong Laboratory of Lingnan Modern Agriculture, Genome Analysis Laboratory of the Ministry of Agriculture and Rural Affairs, Agricultural Genomics Institute at Shenzhen, Chinese Academy of Agricultural Sciences, Shenzhen 518120, China.

Academy for Advanced Interdisciplinary Studies, Nanjing Agricultural University, Nanjing 210095, China.

出版信息

Int J Mol Sci. 2024 Jul 22;25(14):7985. doi: 10.3390/ijms25147985.

Abstract

Regulation of translation is a crucial step in gene expression. Developmental signals and environmental stimuli dynamically regulate translation via upstream small open reading frames (uORFs) and ribosome pausing. Recent studies have revealed many plant genes that are specifically regulated by uORF translation following changes in growth conditions, but ribosome-pausing events are less well understood. In this study, we performed ribosome profiling (Ribo-seq) of etiolated maize () seedlings exposed to light for different durations, revealing hundreds of genes specifically regulated at the translation level during the early period of light exposure. We identified over 400 ribosome-pausing events in the dark that were rapidly released after illumination. These results suggested that ribosome pausing negatively regulates translation from specific genes, a conclusion that was supported by a non-targeted proteomics analysis. Importantly, we identified a conserved nucleotide motif downstream of the pausing sites. Our results elucidate the role of ribosome pausing in the control of gene expression in plants; the identification of the -element at the pausing sites provides insight into the mechanisms behind translation regulation and potential targets for artificial control of plant translation.

摘要

翻译调控是基因表达的关键步骤。发育信号和环境刺激通过上游小开放阅读框(uORF)和核糖体暂停来动态调节翻译。最近的研究揭示了许多植物基因,它们在生长条件发生变化时,通过 uORF 翻译特异性地被调控,但核糖体暂停事件的了解较少。在这项研究中,我们对暴露在不同时间光下的黄化玉米()幼苗进行了核糖体谱(Ribo-seq)分析,揭示了在光暴露早期,数百个基因在翻译水平上受到特异性调控。我们在黑暗中鉴定了超过 400 个核糖体暂停事件,这些事件在光照后迅速释放。这些结果表明,核糖体暂停负调控特定基因的翻译,这一结论得到了非靶向蛋白质组学分析的支持。重要的是,我们在暂停位点的下游鉴定了一个保守的核苷酸基序。我们的结果阐明了核糖体暂停在植物基因表达调控中的作用;在暂停位点鉴定的 - 元件为翻译调控的机制提供了深入了解,并为人工控制植物翻译提供了潜在的靶点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7196/11277263/b05602174364/ijms-25-07985-g001.jpg

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