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Tertiary Structural and Functional Analyses of a Viroid RNA Motif by Isostericity Matrix and Mutagenesis Reveal Its Essential Role in Replication

机译:通过等规度矩阵和诱变的类病毒RNA母体的三级结构和功能分析揭示了其在复制中的重要作用。

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摘要

RNA-templated RNA replication is essential for viral or viroid infection, as well as for regulation of cellular gene expression. Specific RNA motifs likely regulate various aspects of this replication. Viroids of the Pospiviroidae family, as represented by the Potato spindle tuber viroid (PSTVd), replicate in the nucleus by utilizing DNA-dependent RNA polymerase II. We investigated the role of the loop E (sarcin/ricin) motif of the PSTVd genomic RNA in replication. A tertiary-structural model of this motif, inferred by comparative sequence analysis and comparison with nuclear magnetic resonance and X-ray crystal structures of loop E motifs in other RNAs, is presented in which core non-Watson-Crick base pairs are precisely specified. Isostericity matrix analysis of these base pairs showed that the model accounts for the reported natural sequence variations and viable experimental mutations in loop E motifs of PSTVd and other viroids. Furthermore, isostericity matrix analysis allowed us to design disruptive, as well as compensatory, mutations of PSTVd loop E. Functional analyses of such mutants by in vitro and in vivo experiments demonstrated that loop E structural integrity is crucial for replication, specifically during transcription. Our results suggest that the PSTVd loop E motif exists and functions in vivo and provide loss-of-function genetic evidence for the essential role of a viroid RNA three-dimensional motif in rolling-circle replication. The use of isostericity matrix analysis of non-Watson-Crick base pairing to rationalize mutagenesis of tertiary motifs and systematic in vitro and in vivo functional assays of mutants offers a novel, comprehensive approach to elucidate the tertiary-structure-function relationships for RNA motifs of general biological significance.
机译:RNA模板RNA复制对于病毒或类病毒感染以及调节细胞基因表达至关重要。特定的RNA基序可能调节该复制的各个方面。以马铃薯纺锤块茎类病毒(PSTVd)为代表的假单胞菌科类病毒通过利用DNA依赖性RNA聚合酶II在细胞核中复制。我们调查了PSTVd基因组RNA的环E(肌氨酸/蓖麻毒蛋白)基序在复制中的作用。通过比较序列分析,并与其他RNA中E环的E环的X射线晶体结构进行比较序列分析和比较,推断出该基序的三级结构模型,其中精确指定了核心非Watson-Crick碱基对。这些碱基对的等位矩阵分析表明,该模型说明了PSTVd和其他类病毒的E环基序中报道的自然序列变异和可行的实验突变。此外,等排矩阵分析使我们能够设计PSTVd环E的破坏性和补偿性突变。通过体外和体内实验对此类突变体的功能分析表明,环E的结构完整性对于复制至关重要,特别是在转录过程中。我们的研究结果表明PSTVd环E母题存在并在体内发挥作用,并提供功能缺失的遗传证据,证明类RNA 3D三维母题在滚环复制中的重要作用。使用非Watson-Crick碱基配对的等位矩阵分析来合理地修饰第三基序的诱变和系统的突变体体外和体内功能分析,提供了一种新颖,全面的方法来阐明RNA分子的三级结构-功能关系一般生物学意义。

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