Miller E D, Plante C A, Kim K H, Brown J W, Hemenway C
Department of Biochemistry, North Carolina State University, Raleigh, 27695, USA.
J Mol Biol. 1998 Dec 4;284(3):591-608. doi: 10.1006/jmbi.1998.2174.
Computer-generated thermodynamic predictions and solution structure probing indicated two stem-loop structures, stem-loop 1 (SL1; nt 32-106) and stem-loop 2 (SL2; nt 143-183), within the 5' 230 nt of potato virus X (PVX) RNA. Because the existence of SL1 was further supported by covariation analysis of several PVX strains, the functional significance of this structure was investigated by site-directed mutational analysis in a tobacco protoplast system. In general, mutations that reduced genomic plus-strand RNA accumulation similarly affected coat protein accumulation, indicating that subgenomic plus-strand RNA was also affected. In contrast, minus-strand RNA levels remained relatively unchanged. Mutational analysis of the stem C (SC) region of SL1 indicated that pairing was more important than sequence, which was consistent with the covariation analysis. Alterations that increased length and stability of either SC or stem D (SD) were deleterious to plus-strand RNA accumulation. The formation of internal loop C between SC and SD, as well as specific nucleotides within this loop, were also required. Several modifications were made to the terminal GAAA tetraloop, a motif known for enhanced RNA stability. Both GANA and GAAG motifs resulted in wild-type levels of RNA accumulation. However, a UUCG tetraloop was detrimental, indicating that the sequence of this element was important beyond just providing stabilization of the structure. These data indicate that multiple features of SL1 are critical for accumulation of PVX plus-strand RNA.
计算机生成的热力学预测和溶液结构探测表明,在马铃薯X病毒(PVX)RNA的5'端230个核苷酸内存在两个茎环结构,即茎环1(SL1;核苷酸32 - 106)和茎环2(SL2;核苷酸143 - 183)。由于对几种PVX毒株的共变分析进一步支持了SL1的存在,因此在烟草原生质体系统中通过定点突变分析研究了该结构的功能意义。一般来说,降低基因组正链RNA积累的突变同样会影响外壳蛋白的积累,这表明亚基因组正链RNA也受到了影响。相比之下,负链RNA水平相对保持不变。对SL1的茎C(SC)区域的突变分析表明,碱基配对比序列更重要,这与共变分析结果一致。增加SC或茎D(SD)的长度和稳定性的改变对正链RNA积累是有害的。SC和SD之间内部环C的形成以及该环内的特定核苷酸也是必需的。对末端GAAA四环进行了几种修饰,该基序以增强RNA稳定性而闻名。GANA和GAAG基序都导致了野生型水平的RNA积累。然而,UUCG四环是有害的,这表明该元件的序列不仅对提供结构稳定性很重要。这些数据表明,SL1的多个特征对PVX正链RNA的积累至关重要。