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Mechanism of ribosome shunting in Rice tungro bacilliform pararetrovirus.

机译:水稻通哥杆菌形副逆转录病毒中核糖体分流的机制。

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摘要

In plant pararetroviruses, pregenomic RNA serves both as a template for replication through reverse transcription and a polysictronic mRNA. This RNA has a complex leader sequence preceding the first large ORF. The leader contains multiple short ORFs and strong secondary structure, both inhibiting ribosome scanning. Translation on this RNA is initiated by shunting, in which scanning ribosomes bypass a large portion of the leader with the inhibitory secondary structure and short ORFs. In Cauliflower mosaic virus (CaMV), the ribosome shunting mechanism involves translation of the 5'-proximal short ORF terminating in front of the secondary structure that appears to force ribosomes to take off and resume scanning at a landing site downstream of the structure. Using two plant protoplast systems and shunt-competent wheat-germ extracts, we demonstrate that in Rice tungro bacilliform virus (RTBV) shunting also depends on the first short ORF followed by strong secondary structure. Swapping of the conserved shuntelements between CaMV and RTBV revealed the importance of nucleotide composition of the landing sequence for efficient shunting. The results suggest that the mechanism of ribosome shunting is evolutionary conserved in plant pararetroviruses.
机译:在植物副逆转录病毒中,前基因组RNA既可作为通过逆转录进行复制的模板,又可以用作多顺反子mRNA。该RNA在第一个大ORF之前具有复杂的前导序列。前导序列包含多个短ORF和强大的二级结构,均抑制核糖体扫描。该RNA的翻译通过分流开始,其中扫描核糖体绕过具有抑制性二级结构和短ORF的大部分前导序列。在花椰菜花叶病毒(CaMV)中,核糖体分流机制涉及终止于二级结构前面的5'-近端短ORF的翻译,这似乎迫使核糖体脱下并在结构下游的着陆点恢复扫描。使用两种植物原生质体系统和具有分流能力的小麦胚芽提取物,我们证明了在水稻通格杆菌病毒(RTBV)中,分流还取决于最初的短ORF和随后的强二级结构。在CaMV和RTBV之间交换保守的分流元件揭示了着陆序列的核苷酸组成对于有效分流的重要性。结果表明核糖体分流的机制在植物副逆转录病毒中是进化保守的。

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