Park Nam-il, Muench Douglas G
Department of Biological Sciences, University of Calgary, 2500 University Drive NW, Calgary, Alberta, CanadaT2N 1N4.
Planta. 2007 Feb;225(3):625-39. doi: 10.1007/s00425-006-0385-y. Epub 2006 Sep 5.
The exon junction complex (EJC) plays an important role in post-transcriptional control of gene expression. Mago nashi (Mago) and Y14 are core EJC proteins that operate as a functional unit in animal cells, and the Mago-Y14 heterodimer interacts with other EJC core and peripheral proteins. Little is known about the biochemical and cellular characteristics of the EJC and its orthologs in plants. Here, we demonstrate that Arabidopsis Mago and Y14 form a ternary complex with PYM, an RNA-binding protein that was previously shown to interact with the Mago-Y14 heterodimer in Drosophila. Fluorescence microscopy indicated that Arabidopsis Mago and Y14 are localized primarily in the nucleus, whereas PYM is mostly cytoplasmic. In vitro pull-down assays using recombinant proteins showed that the amino-terminal region of the Arabidopsis PYM interacts with the Mago-Y14 heterodimer, a similar observation to that previously reported for the animal versions of these proteins. However, we demonstrated also that Arabidopsis PYM has the ability to interact with monomeric Mago and monomeric Y14. Immunoprecipitation and tandem affinity purification from whole cell extracts detected a subtle interaction between the Arabidopsis Mago-Y14 heterodimer and PYM in flowers, indicating that the ternary complex is not abundant in plant cells. The regions of the polypeptide responsible for nuclear import and export were defined using protein truncations and site-directed mutagenesis. This study identifies unique characteristics of Arabidopsis Mago, Y14 and PYM compared to those observed in animal cells. These are predicted to have important functional implications associated with post-transcriptional regulation of gene expression in plant cells.
外显子连接复合体(EJC)在基因表达的转录后调控中发挥着重要作用。Mago nashi(Mago)和Y14是动物细胞中作为功能单元发挥作用的核心EJC蛋白,Mago - Y14异二聚体与其他EJC核心蛋白和外周蛋白相互作用。关于植物中EJC及其直系同源物的生化和细胞特征知之甚少。在这里,我们证明拟南芥Mago和Y14与PYM形成三元复合体,PYM是一种RNA结合蛋白,先前已证明它在果蝇中与Mago - Y14异二聚体相互作用。荧光显微镜观察表明,拟南芥Mago和Y14主要定位于细胞核,而PYM大多位于细胞质中。使用重组蛋白进行的体外下拉实验表明,拟南芥PYM的氨基末端区域与Mago - Y14异二聚体相互作用,这与先前报道的这些蛋白的动物版本的观察结果相似。然而,我们还证明拟南芥PYM能够与单体Mago和单体Y14相互作用。从全细胞提取物中进行免疫沉淀和串联亲和纯化检测到花中拟南芥Mago - Y14异二聚体与PYM之间存在微弱的相互作用,表明三元复合体在植物细胞中并不丰富。使用蛋白质截短和定点诱变确定了负责核输入和输出的多肽区域。这项研究确定了拟南芥Mago、Y14和PYM与动物细胞中观察到的相比的独特特征。预计这些特征对植物细胞中基因表达的转录后调控具有重要的功能意义。