首页> 外文期刊>PLoS Pathogens >A three-dimensional RNA motif mediates directional trafficking of Potato spindle tuber viroid from epidermal to palisade mesophyll cells in Nicotiana benthamiana
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A three-dimensional RNA motif mediates directional trafficking of Potato spindle tuber viroid from epidermal to palisade mesophyll cells in Nicotiana benthamiana

机译:三维RNA主题介导马铃薯纺织块茎病原体从尼古利亚纳·宾夕法尼亚州露天植物的表皮培养的定向贩运马铃薯主轴块茎病原体

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Potato spindle tuber viroid (PSTVd) is a circular non-coding RNA of 359 nucleotides that replicates and spreads systemically in host plants, thus all functions required to establish an infection are mediated by sequence and structural elements in the genome. The PSTVd secondary structure contains 26 Watson-Crick base-paired stems and 27 loops. Most of the loops are believed to form three-dimensional (3D) structural motifs through non-Watson-Crick base pairing, base stacking, and other local interactions. Homology-based prediction using the JAR3D online program revealed that loop 27 (nucleotides 177–182) most likely forms a 3D structure similar to the loop of a conserved hairpin located in the 3' untranslated region of histone mRNAs in animal cells. This stem-loop, which is involved in 3'-end maturation, is not found in polyadenylated plant histone mRNAs. Mutagenesis showed that PSTVd genomes containing base substitutions in loop 27 predicted by JAR3D to disrupt the 3D structure were unable to replicate in Nicotiana benthamiana leaves following mechanical rub inoculation, with one exception: a U178G/U179G double mutant was replication-competent and able to spread within the upper epidermis of inoculated leaves, but was confined to this cell layer. Remarkably, direct delivery of the U178G/U179G mutant into the vascular system by needle puncture inoculation allowed it to spread systemically and enter mesophyll cells and epidermal cells of upper leaves. These findings highlight the importance of RNA 3D structure for PSTVd replication and intercellular trafficking and indicate that loop 27 is required for epidermal exit, but not epidermal entry or transit between other cell types. Thus, requirements for RNA trafficking between epidermal and underlying palisade mesophyll cells are unique and directional. Our findings further suggest that 3D structure and RNA-protein interactions constrain RNA sequence evolution, and validate JAR3D as a tool to predict RNA 3D structure.
机译:土豆纺织菌病毒源(PSTVD)是359个核苷酸的圆形非编码RNA,其在宿主植物中全身复制和涂抹,因此建立感染所需的所有功能是通过基因组中的序列和结构元素介导的。 PSTVD二级结构包含26个Watson-Crick底座配对杆和27个环。据信大多数环通过非Watson-Crick基础配对,基本堆叠和其他局部相互作用形成三维(3D)结构图案。使用JAR3D在线程序的基于同源的预测显示,循环27(核苷酸177-182)最有可能形成类似于位于动物细胞中的组蛋白MRNA的3'未翻译区域中的保守发夹的环路的3D结构。该茎环涉及3'-终端成熟,在多腺苷酸化植物组蛋白MRNA中未发现。诱变表明,在机械摩擦接种之后,在纳米多南部叶片中预测的jar3d预测的环27中含有碱基取代的PSTVD基因组不能复制,其中一个例外:U178G / U179G双突变体是复制的,可以传播在接种叶片的上表皮内,但被限制在该细胞层。值得注意地,通过针刺接种将U178G / U179G突变体的直接递送进入血管系统中,使其能够全身涂布并进入上叶片的叶片细胞和表皮细胞。这些发现突出了RNA 3D结构对PSTVD复制和细胞间行动的重要性,并表明表皮出口需要环27,但不是在其他细胞类型之间的表皮进入或转运。因此,表皮和底层培拉细胞之间RNA运输的要求是独特的,方向的。我们的发现进一步表明3D结构和RNA蛋白质相互作用约束RNA序列演化,并验证JAR3D作为预测RNA 3D结构的工具。

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