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首页> 外文期刊>BMC Plant Biology >Genome-wide analysis of the plant-specific PLATZ proteins in maize and identification of their general role in interaction with RNA polymerase III complex
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Genome-wide analysis of the plant-specific PLATZ proteins in maize and identification of their general role in interaction with RNA polymerase III complex

机译:玉米中植物特异性PLATZ蛋白的全基因组分析及其在与RNA聚合酶III复合体相互作用中的一般作用

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PLATZ proteins are a novel class of plant-specific zinc-dependent DNA-binding proteins that are classified as transcription factors (TFs). However, their common biochemical features and functions are poorly understood. Here, we identified and cloned 17 PLATZ genes in the maize (Zea mays) genome. All ZmPLATZs were located in nuclei, consistent with their predicted role as TFs. However, none of ZmPLATZs was found to have intrinsic activation properties in yeast. Our recent work shows that FL3 (ZmPLATZ12) interacts with RPC53 and TFC1, two critical factors in the RNA polymerase III (RNAPIII) transcription complex. Using the yeast two-hybrid assay, we determined that seven other PLATZs interacted with both RPC53 and TFC1, whereas three had no protein-protein interaction with these two factors. The other six PLATZs interacted with either RPC53 or TFC1. These findings indicate that ZmPLATZ proteins are generally involved in the modulation of RNAPIII-mediated small non-coding RNA transcription. We also identified all of the PLATZ members in rice (Oryza sativa) and Arabidopsis thaliana and constructed a Maximum likelihood phylogenetic tree for ZmPLATZs. The resulting tree included 44 members and 5 subfamilies. This study provides insight into understanding of the phylogenetic relationship, protein structure, expression pattern and cellular localization of PLATZs in maize. We identified nine and thirteen ZmPLATZs that have protein-protein interaction with RPC53 and TFC1 in the current study, respectively. Overall, the characterization and functional analysis of the PLATZ family in maize will pave the way to understanding RNAPIII-mediated regulation in plant development.
机译:PLATZ蛋白是一类新型的植物特异性锌依赖性DNA结合蛋白,被归类为转录因子(TF)。但是,它们的共同生化特征和功能了解甚少。在这里,我们在玉米(Zea mays)基因组中鉴定并克隆了17个PLATZ基因。所有ZmPLATZ都位于细胞核中,与其预测的TF作用一致。但是,没有发现ZmPLATZ在酵母中具有内在的激活特性。我们最近的工作表明,FL3(ZmPLATZ12)与RPC53和TFC1相互作用,RPC53和TFC1是RNA聚合酶III(RNAPIII)转录复合物中的两个关键因子。使用酵母双杂交测定法,我们确定其他七个PLATZ与RPC53和TFC1相互作用,而三个与这两个因子没有蛋白相互作用。其他六个PLATZ与RPC53或TFC1交互。这些发现表明ZmPLATZ蛋白通常参与RNAPIII介导的小非编码RNA转录的调节。我们还鉴定了水稻(Oryza sativa)和拟南芥中的所有PLATZ成员,并为ZmPLATZs构建了最大似然系统树。结果树包括44个成员和5个子家族。这项研究提供了深入了解玉米中PLATZ的系统发生关系,蛋白质结构,表达模式和细胞定位的见解。在本研究中,我们分别鉴定出9个和13个ZmPLATZ与RPC53和TFC1具有蛋白质-蛋白质相互作用。总体而言,玉米PLATZ家族的表征和功能分析将为理解RNAPIII介导的植物发育调控铺平道路。

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