首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Gene VI of figwort mosaic virus (caulimovirus group) functions in posttranscriptional expression of genes on the full-length RNA transcript.
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Gene VI of figwort mosaic virus (caulimovirus group) functions in posttranscriptional expression of genes on the full-length RNA transcript.

机译:玄参花叶病毒(花椰菜病毒组)的基因VI在全长RNA转录本上的基因转录后表达中起作用。

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摘要

Experimental evidence for a molecular function for gene VI of the caulimoviruses is presented. Based on experiments with the figwort mosaic virus (FMV), it appears that gene VI has a role in the posttranscriptional expression of the closely packed genes (VII and I-V), which appear on the larger, full-length RNA transcript of this virus. Gene VI with its flanking 5'/3' expression signals included as a separate plasmid during electroporation of DNA into protoplasts of Nicotiana edwardsonii shows an unusual type of transactivation of a chloramphenicol acetyltransferase (CAT) gene fused at its 5' end to a small open reading frame (gene VII) of the long 5' leader of the full-length RNA transcript of the FMV genome. The level of activity of the CAT gene is increased up to 20-fold over the activity of control plasmids when gene VI is included in the electroporation mixture. Mutagenesis of the coding portions of gene VI of pGS1 RVI, a transactivating plasmid used in the electroporation experiments, demonstrated that it was probably the polypeptide product of gene VI that was responsible for the transactivating effect. Experiments with various portions of the 5' leader of the large, full-length RNA of FMV showed that the coding region of gene VII is necessary for the transactivation event. Clones of cauliflower mosaic virus (CaMV) or FMV with intact gene VI were found to reciprocally transactivate gene VII-CAT fusions (FMV) or gene I-CAT fusions (CaMV) located downstream of the 5' leader sequences of either viral genome.
机译:提供了针对花椰菜花叶病毒的基因VI的分子功能的实验证据。根据对非花草花叶病毒(FMV)进行的实验,似乎基因VI在紧密包装的基因(VII和I-V)的转录后表达中起作用,该基因出现在该病毒的较大全长RNA转录本上。基因VI具有侧翼5'/ 3'表达信号,在将DNA电穿孔到爱德华烟草原生质体中时作为单独的质粒包括在内,显示了氯霉素乙酰基转移酶(CAT)基因在其5'端融合到一个小开口的异常激活类型FMV基因组全长RNA转录本的5'长前导序列的阅读框(基因VII)。当电穿孔混合物中包含基因VI时,CAT基因的活性水平比对照质粒的活性提高多达20倍。对pGS1 RVI基因VI的编码部分进行了诱变,这是一种用于电穿孔实验的反式激活质粒,证明可能是基因VI的多肽产物引起了反式激活作用。对FMV大型全长RNA 5'前导序列的不同部分进行的实验表明,基因VII的编码区对于反式激活事件是必需的。发现具有完整基因VI的花椰菜花叶病毒(CaMV)或FMV克隆可相互反激活位于任一病毒基因组5'前导序列下游的VII-CAT融合基因(FMV)或I-CAT融合基因(CaMV)。

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