Zhong Xuehua, Tao Xiaorong, Stombaugh Jesse, Leontis Neocles, Ding Biao
Department of Plant Cellular and Molecular Biology and Plant Biotechnology Center, Ohio State University, Columbus, OH 43210, USA.
EMBO J. 2007 Aug 22;26(16):3836-46. doi: 10.1038/sj.emboj.7601812. Epub 2007 Jul 26.
Vascular entry is a decisive step for the initiation of long-distance movement of infectious and endogenous RNAs, silencing signals and developmental/defense signals in plants. However, the mechanisms remain poorly understood. We used Potato spindle tuber viroid (PSTVd) as a model to investigate the direct role of the RNA itself in vascular entry. We report here the identification of an RNA motif that is required for PSTVd to traffic from nonvascular into the vascular tissue phloem to initiate systemic infection. This motif consists of nucleotides U/C that form a water-inserted cis Watson-Crick/Watson-Crick base pair flanked by short helices that comprise canonical Watson-Crick/Watson-Crick base pairs. This tertiary structural model was inferred by comparison with X-ray crystal structures of similar motifs in rRNAs and is supported by combined mutagenesis and covariation analyses. Hydration pattern analysis suggests that water insertion induces a widened minor groove conducive to protein and/or RNA interactions. Our model and approaches have broad implications to investigate the RNA structural motifs in other RNAs for vascular entry and to study the basic principles of RNA structure-function relationships.
在植物中,血管进入是传染性和内源性RNA、沉默信号以及发育/防御信号进行长距离移动起始的决定性步骤。然而,其机制仍知之甚少。我们以马铃薯纺锤块茎类病毒(PSTVd)为模型,研究RNA本身在血管进入中的直接作用。我们在此报告鉴定出一种RNA基序,它是PSTVd从非维管组织进入维管组织韧皮部以引发系统感染所必需的。该基序由核苷酸U/C组成,形成一个插入水的顺式沃森-克里克/沃森-克里克碱基对,两侧是由典型沃森-克里克/沃森-克里克碱基对组成的短螺旋。通过与rRNA中类似基序的X射线晶体结构比较推断出该三级结构模型,并得到组合诱变和共变分析的支持。水合模式分析表明,水的插入会诱导小沟变宽,有利于蛋白质和/或RNA相互作用。我们的模型和方法对于研究其他RNA中用于血管进入的RNA结构基序以及研究RNA结构-功能关系的基本原理具有广泛意义。