Kwon C S, Chung W
Department of Biological Sciences, Korea Advanced Institute of Science and Technology, Taejon, South Korea.
FEBS Lett. 1999 Nov 26;462(1-2):161-6. doi: 10.1016/s0014-5793(99)01522-7.
The 5' untranslated region (UTR) of cucumber mosaic virus (CMV) RNA 4 confers a highly competitive translational advantage on a heterologous luciferase open reading frame. Here we investigated whether secondary structure in the 5' UTR contributes to this translational advantage. Stabilization of the 5' UTR RNA secondary structure inhibited competitive translational activity. Alteration of a potential single-stranded loop to a stem by substitution mutations greatly inhibited the competitive translational activity. Tobacco plants infected with wild type virus showed a 2.5-fold higher accumulation of maximal coat protein than did plants infected with a loop-mutant virus. Amplification of viral RNA in these plants could not explain the difference in accumulation of coat protein. Phylogenetic comparison showed that potential single-stranded loops of 12-23 nucleotides in length exist widely in subgroups of CMV.
黄瓜花叶病毒(CMV)RNA 4的5'非翻译区(UTR)赋予异源荧光素酶开放阅读框高度竞争性的翻译优势。在此,我们研究了5'UTR中的二级结构是否有助于这种翻译优势。5'UTR RNA二级结构的稳定抑制了竞争性翻译活性。通过取代突变将潜在的单链环改变为茎,极大地抑制了竞争性翻译活性。感染野生型病毒的烟草植株比感染环突变病毒的植株显示出最高衣壳蛋白积累量高2.5倍。这些植株中病毒RNA的扩增无法解释衣壳蛋白积累的差异。系统发育比较表明,长度为12 - 23个核苷酸的潜在单链环广泛存在于CMV的亚组中。