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一种用于底物剪接和衰变活性功能研究的定量IRE1a核糖核酸酶依赖性mRNA切割检测方法。

A Quantitative IRE1a Ribonuclease-Dependent mRNA Cleavage Assay for Functional Studies of Substrate Splicing and Decay Activities.

作者信息

Diwan Danish, Liu Xiaoyu, Andrews Caroline F, Pajerowska-Mukhtar Karolina M

机构信息

Department of Biology, The University of Alabama at Birmingham, Birmingham, AL, United States.

出版信息

Front Plant Sci. 2021 Jul 20;12:707378. doi: 10.3389/fpls.2021.707378. eCollection 2021.

Abstract

The unfolded protein response (UPR) is an adaptive eukaryotic reaction that controls the protein folding capacities of the endoplasmic reticulum (ER). The most ancient and well-conserved component of the UPR is Inositol-Requiring Enzyme 1 (IRE1). Arabidopsis IRE1a (AtIRE1) is a transmembrane sensor of ER stress equipped with dual protein kinase and ribonuclease (RNase) activities, encoded by its C-terminal domain. In response to both physiological stresses and pathological perturbations, AtIRE1a directly cleaves () mRNA. Here, we developed a quantitative cleavage assay that combines recombinant AtIRE1a protein that is expressed in and total RNA isolated from Arabidopsis leaves. Wild-type AtIRE1a as well as its variants containing point mutations in the kinase or RNase domains that modify its cleavage activity were employed to demonstrate their contributions to cleavage activity levels. We show that, when exposed to total RNA , the AtIRE1a protein cleaves mRNA. Depletion of the bZIP60 transcript in the reaction mixture can be precisely quantified by a qRT-PCR-mediated assay. This method facilitates the functional studies of novel plant IRE1 variants by allowing to quickly and precisely assess the effects of protein mutations on the substrate mRNA cleavage activity before advancing to more laborious, stable transgenic approaches . Moreover, this method is readily adaptable to other plant IRE1 paralogs and orthologs, and can also be employed to test additional novel mRNA substrates of plant IRE1, such as transcripts undergoing degradation through the process of regulated IRE1-dependent decay (RIDD). Finally, this method can also be modified and expanded to functional testing of IRE1 interactors and inhibitors, as well as for studies on the molecular evolution of IRE1 and its substrates, providing additional insights into the mechanistic underpinnings of IRE1-mediated ER stress homeostasis in plant tissues.

摘要

未折叠蛋白反应(UPR)是一种适应性真核反应,可控制内质网(ER)的蛋白质折叠能力。UPR中最古老且保守的成分是肌醇需求酶1(IRE1)。拟南芥IRE1a(AtIRE1)是一种内质网应激的跨膜传感器,其C端结构域编码具有双重蛋白激酶和核糖核酸酶(RNase)活性。响应生理应激和病理扰动,AtIRE1a直接切割()mRNA。在这里,我们开发了一种定量切割分析方法,该方法结合了在中表达的重组AtIRE1a蛋白和从拟南芥叶片中分离的总RNA。使用野生型AtIRE1a及其在激酶或RNase结构域中含有点突变的变体,这些变体改变了其切割活性,以证明它们对切割活性水平的贡献。我们表明,当暴露于总RNA时,AtIRE1a蛋白切割mRNA。反应混合物中bZIP60转录本的消耗可以通过qRT-PCR介导的分析精确量化。该方法通过允许在推进到更费力的稳定转基因方法之前快速准确地评估蛋白质突变对底物mRNA切割活性的影响,促进了新型植物IRE1变体的功能研究。此外,该方法很容易适用于其他植物IRE1旁系同源物和直系同源物,也可用于测试植物IRE1的其他新型mRNA底物,例如通过受调控的IRE1依赖性衰变(RIDD)过程进行降解的转录本。最后,该方法还可以修改和扩展,用于IRE1相互作用蛋白和抑制剂的功能测试,以及IRE1及其底物的分子进化研究,为植物组织中IRE1介导的内质网应激稳态的机制基础提供更多见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dda4/8329651/1cd1a108ea35/fpls-12-707378-g001.jpg

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