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拟南芥 SME1 通过决定剪接体活性特异性调控植物发育和非生物胁迫响应。

Arabidopsis SME1 Regulates Plant Development and Response to Abiotic Stress by Determining Spliceosome Activity Specificity.

机构信息

Departamento de Biotecnología Microbiana y de Plantas, Centro de Investigaciones Biológicas-CSIC, 28040 Madrid, Spain.

Departamento de Biotecnología Microbiana y de Plantas, Centro de Investigaciones Biológicas-CSIC, 28040 Madrid, Spain

出版信息

Plant Cell. 2019 Feb;31(2):537-554. doi: 10.1105/tpc.18.00689. Epub 2019 Jan 29.

Abstract

The control of precursor-messenger RNA (pre-mRNA) splicing is emerging as an important layer of regulation in plant responses to endogenous and external cues. In eukaryotes, pre-mRNA splicing is governed by the activity of a large ribonucleoprotein machinery, the spliceosome, whose protein core is composed of the Sm ring and the related Sm-like 2-8 complex. Recently, the Arabidopsis () Sm-like 2-8 complex has been characterized. However, the role of plant Sm proteins in pre-mRNA splicing remains largely unknown. Here, we present the functional characterization of Sm protein E1 (SME1), an Arabidopsis homolog of the SME subunit of the eukaryotic Sm ring. Our results demonstrate that SME1 regulates the spliceosome activity and that this regulation is controlled by the environmental conditions. Indeed, depending on the conditions, SME1 ensures the efficiency of constitutive and alternative splicing of selected pre-mRNAs. Moreover, missplicing of most targeted pre-mRNAs leads to the generation of nonsense-mediated decay signatures, indicating that SME1 also guarantees adequate levels of the corresponding functional transcripts. In addition, we show that the selective function of SME1 in ensuring appropriate gene expression patterns through the regulation of specific pre-mRNA splicing is essential for adequate plant development and adaptation to freezing temperatures. These findings reveal that SME1 plays a critical role in plant development and interaction with the environment by providing spliceosome activity specificity.

摘要

前体信使 RNA(pre-mRNA)剪接的调控正成为植物对内源性和外源性信号响应的一个重要调控层。在真核生物中,pre-mRNA 的剪接受大型核糖核蛋白复合物剪接体的活性调控,剪接体的蛋白核心由 Sm 环和相关的 Sm-like 2-8 复合物组成。最近,拟南芥的 Sm-like 2-8 复合物已经被鉴定。然而,植物 Sm 蛋白在 pre-mRNA 剪接中的作用在很大程度上仍然未知。在这里,我们介绍了拟南芥 Sm 蛋白 E1(SME1)的功能特征,它是真核 Sm 环的 SME 亚基的同源物。我们的结果表明,SME1 调节剪接体的活性,这种调节受环境条件的控制。事实上,根据条件的不同,SME1 确保了选定的组成型和选择性剪接 pre-mRNA 的效率。此外,大多数靶向 pre-mRNA 的错误剪接导致无意义介导的衰变特征的产生,表明 SME1 还保证了相应功能转录物的适当水平。此外,我们表明,SME1 通过调节特定的 pre-mRNA 剪接来确保适当的基因表达模式的选择性功能对于植物的正常发育和适应低温是至关重要的。这些发现表明,SME1 通过提供剪接体活性的特异性,在植物发育和与环境的相互作用中发挥着关键作用。

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