Translational gene regulation in plants: A green new deal

平动调节 生物 翻译(生物学) 核糖核酸 核糖体 计算生物学 蛋白质生物合成 细胞生物学 基因 遗传学 信使核糖核酸
作者
Ricardo A. Urquidi Camacho,Ansul Lokdarshi,Albrecht G. von Arnim
出处
期刊:Wiley Interdisciplinary Reviews - Rna [Wiley]
卷期号:11 (6) 被引量:46
标识
DOI:10.1002/wrna.1597
摘要

Abstract The molecular machinery for protein synthesis is profoundly similar between plants and other eukaryotes. Mechanisms of translational gene regulation are embedded into the broader network of RNA‐level processes including RNA quality control and RNA turnover. However, over eons of their separate history, plants acquired new components, dropped others, and generally evolved an alternate way of making the parts list of protein synthesis work. Research over the past 5 years has unveiled how plants utilize translational control to defend themselves against viruses, regulate translation in response to metabolites, and reversibly adjust translation to a wide variety of environmental parameters. Moreover, during seed and pollen development plants make use of RNA granules and other translational controls to underpin developmental transitions between quiescent and metabolically active stages. The economics of resource allocation over the daily light–dark cycle also include controls over cellular protein synthesis. Important new insights into translational control on cytosolic ribosomes continue to emerge from studies of translational control mechanisms in viruses. Finally, sketches of coherent signaling pathways that connect external stimuli with a translational response are emerging, anchored in part around TOR and GCN2 kinase signaling networks. These again reveal some mechanisms that are familiar and others that are different from other eukaryotes, motivating deeper studies on translational control in plants. This article is categorized under: Translation > Translation Regulation RNA Structure and Dynamics > Influence of RNA Structure in Biological Systems RNA Interactions with Proteins and Other Molecules > Protein‐RNA Interactions: Functional Implications
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