Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Instituto de Fisiología, Biología Molecular y Neurociencias (IFIBYNE-CONICET-UBA), Buenos Aires, Argentina.
RNA Biology and Molecular Physiology, Faculty of Biology, Bielefeld University, 33615 Bielefeld, Germany.
Plant Cell. 2023 May 29;35(6):1708-1726. doi: 10.1093/plcell/koac345.
RNA-binding proteins (RBPs) have a broad impact on most biochemical, physiological, and developmental processes in a plant's life. RBPs engage in an on-off relationship with their RNA partners, accompanying virtually every stage in RNA processing and function. While the function of a plethora of RBPs in plant development and stress responses has been described, we are lacking a systems-level understanding of components in RNA-based regulation. Novel techniques have substantially enlarged the compendium of proteins with experimental evidence for binding to RNAs in the cell, the RNA-binding proteome. Furthermore, ribonomics methods have been adapted for use in plants to profile the in vivo binding repertoire of RBPs genome-wide. Here, we discuss how recent technological achievements have provided novel insights into the mode of action of plant RBPs at a genome-wide scale. Furthermore, we touch upon two emerging topics, the connection of RBPs to phase separation in the cell and to extracellular RNAs. Finally, we define open questions to be addressed to move toward an integrated understanding of RBP function.
RNA 结合蛋白 (RBPs) 对植物生命中的大多数生化、生理和发育过程都有广泛的影响。RBPs 与其 RNA 伙伴之间存在开-关关系,伴随 RNA 处理和功能的几乎每一个阶段。虽然已经描述了大量 RBPs 在植物发育和应激反应中的功能,但我们缺乏对基于 RNA 的调控组件的系统级理解。新的技术极大地扩展了具有在细胞中结合 RNA 的实验证据的蛋白质的纲要,即 RNA 结合蛋白质组。此外,已经适应了用于植物的核糖体组学方法来对 RBPs 在全基因组范围内的体内结合谱进行分析。在这里,我们讨论了最近的技术成就如何为在全基因组范围内研究植物 RBPs 的作用模式提供了新的见解。此外,我们还涉及两个新兴的主题,即 RBPs 与细胞内相分离以及与细胞外 RNA 的连接。最后,我们确定了需要解决的开放性问题,以朝着对 RBP 功能的综合理解迈进。