Department of Biochemistry, Jichi Medical University, Shimotsuke-shi, Tochigi-ken, 329-0498, Japan.
RNA. 2019 Jan;25(1):90-104. doi: 10.1261/rna.065466.117. Epub 2018 Oct 18.
The translation of capsid proteins of Plautia stali intestine virus (PSIV), encoded in its second open reading frame (ORF2), is directed by an internal ribosomal entry site (IRES) located in the intergenic region (IGR). Owing to the specific properties of PSIV IGR in terms of nucleotide length and frame organization, capsid proteins are also translated via stop codon readthrough in mammalian cultured cells as an extension of translation from the first ORF (ORF1) and IGR. To delineate stop codon readthrough in PSIV, we determined requirements of -acting elements through a molecular genetics approach applied in both cell-free translation systems and cultured cells. Mutants with deletions from the 3' end of IGR revealed that almost none of the sequence of IGR is necessary for readthrough, apart from the 5'-terminal codon CUA. Nucleotide replacement of this CUA trinucleotide or change of the termination codon from UGA severely impaired readthrough. Chemical mapping of the IGR region of the most active 3' deletion mutant indicated that this defined minimal element UGACUA, together with its downstream sequence, adopts a single-stranded conformation. Stimulatory activities of downstream RNA structures identified to date in gammaretrovirus, coltivirus, and alphavirus were not detected in the context of PSIV IGR, despite the presence of structures for IRES. To our knowledge, PSIV IGR is the first example of stop codon readthrough that is solely defined by the local hexamer sequence, even though the sequence is adjacent to an established region of RNA secondary/tertiary structures.
普雷沃特利亚·斯塔利肠道病毒(PSIV)的衣壳蛋白由其第二个开放阅读框(ORF2)编码,由位于基因间区(IGR)的内部核糖体进入位点(IRES)指导。由于 PSIV IGR 在核苷酸长度和框架组织方面的特定性质,衣壳蛋白也通过哺乳动物培养细胞中转录的终止密码通读翻译,作为从第一个 ORF(ORF1)和 IGR 翻译的延伸。为了描绘 PSIV 中的终止密码通读,我们通过应用于无细胞翻译系统和培养细胞的分子遗传学方法确定了 -作用元件的要求。来自 IGR 3'端缺失的突变体表明,除了 5'-末端密码子 CUA 外,IGR 的几乎没有序列是通读所必需的。该 CUA 三核苷酸的核苷酸替换或终止密码子从 UGA 的改变严重损害了通读。最活跃的 3'缺失突变体的 IGR 区域的化学作图表明,该定义的最小元件 UGACUA 及其下游序列采用单链构象。迄今为止,在γ逆转录病毒、柯萨奇病毒和甲病毒中鉴定的下游 RNA 结构的刺激活性在 PSIV IGR 中未被检测到,尽管存在 IRES 的结构。据我们所知,PSIV IGR 是第一个仅由局部六聚体序列定义的终止密码通读的例子,尽管该序列与已建立的 RNA 二级/三级结构区域相邻。