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拟南芥 mRNA 输出因子 MOS11:分子相互作用及其在非生物胁迫响应中的作用。

Arabidopsis mRNA export factor MOS11: molecular interactions and role in abiotic stress responses.

机构信息

Cell Biology & Plant Biochemistry, Biochemistry Center, University of Regensburg, Universitätsstr. 31, D-93053, Regensburg, Germany.

NGS Analysis Center, Biology and Pre-Clinical Medicine, University of Regensburg, Universitätsstr. 31, D-93053, Regensburg, Germany.

出版信息

New Phytol. 2024 Jul;243(1):180-194. doi: 10.1111/nph.19773. Epub 2024 Apr 22.

Abstract

Transcription and export (TREX) is a multi-subunit complex that links synthesis, processing and export of mRNAs. It interacts with the RNA helicase UAP56 and export factors such as MOS11 and ALYs to facilitate nucleocytosolic transport of mRNAs. Plant MOS11 is a conserved, but sparsely researched RNA-binding export factor, related to yeast Tho1 and mammalian CIP29/SARNP. Using biochemical approaches, the domains of Arabidopsis thaliana MOS11 required for interaction with UAP56 and RNA-binding were identified. Further analyses revealed marked genetic interactions between MOS11 and ALY genes. Cell fractionation in combination with transcript profiling demonstrated that MOS11 is required for export of a subset of mRNAs that are shorter and more GC-rich than MOS11-independent transcripts. The central α-helical domain of MOS11 proved essential for physical interaction with UAP56 and for RNA-binding. MOS11 is involved in the nucleocytosolic transport of mRNAs that are upregulated under stress conditions and accordingly mos11 mutant plants turned out to be sensitive to elevated NaCl concentrations and heat stress. Collectively, our analyses identify functional interaction domains of MOS11. In addition, the results establish that mRNA export is critically involved in the plant response to stress conditions and that MOS11 plays a prominent role at this.

摘要

转录和输出(TREX)是一个多亚基复合物,它连接着 mRNA 的合成、加工和输出。它与 RNA 解旋酶 UAP56 以及 MOS11 和 ALYs 等输出因子相互作用,促进 mRNA 的核质转运。植物 MOS11 是一个保守但研究甚少的 RNA 结合输出因子,与酵母 Tho1 和哺乳动物 CIP29/SARNP 相关。本研究采用生化方法鉴定了拟南芥 MOS11 与 UAP56 和 RNA 结合所需的结构域。进一步的分析表明,MOS11 与 ALY 基因之间存在显著的遗传相互作用。细胞分级分离结合转录谱分析表明,MOS11 对于短且 GC 含量更高的一组 mRNA 的输出是必需的,而这些 mRNA 的输出不依赖于 MOS11。MOS11 的中央α-螺旋结构域对于与 UAP56 的物理相互作用和 RNA 结合是必需的。MOS11 参与了应激条件下上调的 mRNA 的核质转运,因此 mos11 突变体植物对高 NaCl 浓度和热应激敏感。总的来说,我们的分析确定了 MOS11 的功能相互作用结构域。此外,研究结果表明,mRNA 输出在植物对胁迫条件的反应中起着至关重要的作用,而 MOS11 在这方面起着突出的作用。

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