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拟南芥 PUMILIO 蛋白,APUM9 的功能和分子特征。

Functional and molecular characterization of the conserved Arabidopsis PUMILIO protein, APUM9.

机构信息

Université d'Angers, UMR1345 Institut de Recherche en Horticulture et Semences (IRHS-INRA), 42 rue Georges Morel, 24, 49071, Beaucouzé, France.

Agricultural Biotechnology Institute, Szent-Györgyi Albert 4, Gödöllő, 2100, Hungary.

出版信息

Plant Mol Biol. 2019 May;100(1-2):199-214. doi: 10.1007/s11103-019-00853-7. Epub 2019 Mar 13.

Abstract

Here we demonstrate that the APUM9 RNA-binding protein and its co-factors play a role in mRNA destabilization and how this activity might regulate early plant development. APUM9 is a conserved PUF RNA-binding protein (RBP) under complex transcriptional control mediated by a transposable element (TE) that restricts its expression in Arabidopsis. Currently, little is known about the functional and mechanistic details of the plant PUF regulatory system and the biological relevance of the TE-mediated repression of APUM9 in plant development and stress responses. By combining a range of transient assays, we show here, that APUM9 binding to target transcripts can trigger their rapid decay via its conserved C-terminal RNA-binding domain. APUM9 directly interacts with DCP2, the catalytic subunit of the decapping complex and DCP2 overexpression induces rapid decay of APUM9 targeted mRNAs. We show that APUM9 negatively regulates the expression of ABA signaling genes during seed imbibition, and thereby might contribute to the switch from dormant stage to seed germination. By contrast, strong TE-mediated repression of APUM9 is important for normal plant growth in the later developmental stages. Finally, APUM9 overexpression plants show slightly enhanced heat tolerance suggesting that TE-mediated control of APUM9, might have a role not only in embryonic development, but also in plant adaptation to heat stress conditions.

摘要

在这里,我们证明了 APUM9 RNA 结合蛋白及其辅助因子在 mRNA 不稳定化中发挥作用,以及这种活性如何调节早期植物发育。APUM9 是一种保守的 PUF RNA 结合蛋白(RBP),受转座元件(TE)介导的复杂转录调控,限制了其在拟南芥中的表达。目前,人们对植物 PUF 调节系统的功能和机制细节以及 TE 介导的 APUM9 在植物发育和应激反应中的抑制的生物学相关性知之甚少。通过结合一系列瞬时测定,我们在这里表明,APUM9 与靶转录本的结合可以通过其保守的 C 端 RNA 结合结构域触发它们的快速降解。APUM9 直接与脱帽复合物的催化亚基 DCP2 相互作用,DCP2 的过表达诱导 APUM9 靶向 mRNAs 的快速降解。我们表明,APUM9 在种子吸胀过程中负调控 ABA 信号基因的表达,从而可能有助于从休眠阶段到种子萌发的转变。相比之下,APUM9 的强烈 TE 介导抑制对于后期发育阶段的正常植物生长很重要。最后,APUM9 过表达植物表现出略微增强的耐热性,这表明 TE 介导的 APUM9 控制不仅在胚胎发育中,而且在植物适应热应激条件中可能发挥作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/330a/6513901/8353525ecc18/11103_2019_853_Fig1_HTML.jpg

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