Boot Hein J, Pritz-Verschuren Sylvia B E
Animal Sciences Group, Wageningen University and Research Centre, Lelystad, The Netherlands.
Nucleic Acids Res. 2004 Jan 12;32(1):211-22. doi: 10.1093/nar/gkh177. Print 2004.
Many questions regarding the initiation of replication and translation of the segmented, double-stranded RNA genome of infectious bursal disease virus (IBDV) remain to be solved. Computer analysis shows that the non-polyadenylated extreme 3'-untranslated regions (UTRs) of the coding strand of both genomic segments are able to fold into a single stem-loop structure. To assess the determinants for a functional 3'-UTR, we mutagenized the 3'-UTR stem-loop structure of the B-segment. Rescue of infectious virus from mutagenized cDNA plasmids was impaired in all cases. However, after one passage, the replication kinetics of these viruses were restored. Sequence analysis revealed that additional mutations had been acquired in most of the stem-loop structures, which compensated the introduced ones. A rescued virus with a modified stem-loop structure containing four nucleotide substitutions, but preserving its overall secondary structure, was phenotypically indistinguishable from wild-type virus, both in vitro (cell culture) and in vivo (chickens, natural host). Sequence analysis showed that the modified stem-loop structure of this virus was fully preserved after four serial passages. Apparently, it is the stem-loop structure and not the primary sequence that is the functional determinant in the 3'-UTRs of IBDV.
关于传染性法氏囊病病毒(IBDV)的分段双链RNA基因组的复制起始和翻译,仍有许多问题有待解决。计算机分析表明,两个基因组片段编码链的非多聚腺苷酸化极端3'-非翻译区(UTR)能够折叠成单一的茎环结构。为了评估功能性3'-UTR的决定因素,我们对B片段的3'-UTR茎环结构进行了诱变。在所有情况下,从诱变的cDNA质粒中拯救感染性病毒均受到损害。然而,传代一次后,这些病毒的复制动力学得以恢复。序列分析表明,大多数茎环结构中获得了额外的突变,这些突变补偿了引入的突变。一种具有修饰茎环结构的拯救病毒,含有四个核苷酸取代,但保留其整体二级结构,在体外(细胞培养)和体内(鸡,天然宿主)的表型与野生型病毒无明显差异。序列分析表明,该病毒的修饰茎环结构在连续传代四次后完全保留。显然,IBDV的3'-UTR中的功能决定因素是茎环结构而非一级序列。