Zhong Xuehua, Archual Anthony J, Amin Amy A, Ding Biao
Department of Plant Cellular and Molecular Biology, Plant Biotechnology Center, Ohio State University, Columbus, Ohio 43210, USA.
Plant Cell. 2008 Jan;20(1):35-47. doi: 10.1105/tpc.107.056606. Epub 2008 Jan 4.
RNA replication and systemic trafficking play significant roles in developmental regulation and host-pathogen interactions. Viroids are the simplest noncoding eukaryotic RNA pathogens and genetic units that are capable of autonomous replication and systemic trafficking and offer excellent models to investigate the role of RNA structures in these processes. Like other RNAs, the predicted secondary structure of a viroid RNA contains many loops and bulges flanked by double-stranded helices, the biological functions of which are mostly unknown. Using Potato spindle tuber viroid infection of Nicotiana benthamiana as the experimental system, we tested the hypothesis that these loops/bulges are functional motifs that regulate replication in single cells or trafficking in a plant. Through a genome-wide mutational analysis, we identified multiple loops/bulges essential or important for each of these biological processes. Our results led to a genomic map of viroid RNA motifs that mediate single-cell replication and systemic trafficking, respectively. This map provides a framework to enable high-throughput studies on the tertiary structures and functional mechanisms of RNA motifs that regulate viroid replication and trafficking. Our model and approach should also be valuable for comprehensive investigations of the replication and trafficking motifs in other RNAs.
RNA复制和系统运输在发育调控以及宿主与病原体的相互作用中发挥着重要作用。类病毒是最简单的非编码真核RNA病原体和遗传单位,能够自主复制和系统运输,为研究RNA结构在这些过程中的作用提供了极佳的模型。与其他RNA一样,类病毒RNA的预测二级结构包含许多由双链螺旋侧翼的环和凸起,其生物学功能大多未知。以本氏烟草感染马铃薯纺锤块茎类病毒作为实验系统,我们检验了这样一个假设,即这些环/凸起是调节单细胞复制或植物体内运输的功能基序。通过全基因组突变分析,我们确定了对这些生物学过程中的每一个都至关重要或重要的多个环/凸起。我们的结果产生了分别介导单细胞复制和系统运输的类病毒RNA基序的基因组图谱。该图谱提供了一个框架,以实现对调节类病毒复制和运输的RNA基序的三级结构和功能机制的高通量研究。我们的模型和方法对于全面研究其他RNA中的复制和运输基序也应具有重要价值。