Hay N, Kessler M, Aloni Y
Virology. 1984 Aug;137(1):160-70. doi: 10.1016/0042-6822(84)90019-9.
d1861 is an SV40 deletion mutant which was thought to lack the agnoprotein coding region and was used to verify the role of agnoprotein in the life cycle of SV40. In the present study the region flanking the deletion was sequenced and, in contrast to the available information, it was found that d1861 lacks 12 nt in phase, downstream from the AUG start codon of agnoprotein (residues 347-358). Using the runoff protocol with viral transcriptional complexes (VTC), that in vitro elongate the in vivo preinitiated nascent RNA, it was found that in vivo the major initiation site for late transcription is at residue 325, the same as in wild type (WT). In comparison with WT, d1861 encodes information for agnoprotein shortened by four amino acids and it has been identified in d1861 infected cells. However, pulse-chase experiments indicated that the rate of synthesis of d1861 agnoprotein is slower than that of WT agnoprotein and that it has a turnover rate of 1 hr as compared to 3 hr of WT agnoprotein. The reduced rate of synthesis of d1861 agnoprotein can be explained by nuclease S1 analyses in which the major leader of d1861 16 S RNA, that encodes the agnoprotein, appeared in significantly lower amounts as compared to the major leader of WT 16 S RNA. Furthermore, analysis of the potential secondary structures at the 5' end of the leader of d1861 16 S RNA has revealed stable structures in which the start codon of agnoprotein is sequestered in a stem. The involvement of RNA secondary structures in regulating the synthesis of agnoprotein is discussed.
d1861是一种SV40缺失突变体,曾被认为缺少agnoprotein编码区,并被用于验证agnoprotein在SV40生命周期中的作用。在本研究中,对缺失侧翼区域进行了测序,结果发现,与现有信息相反,d1861在agnoprotein的AUG起始密码子下游(第347 - 358位残基)相位缺失12个核苷酸。使用病毒转录复合物(VTC)的径流实验方案,该方案可在体外延伸体内预先起始的新生RNA,结果发现,在体内,晚期转录的主要起始位点位于第325位残基,与野生型(WT)相同。与WT相比,d1861编码的agnoprotein信息缩短了四个氨基酸,并且已在感染d1861的细胞中鉴定到。然而,脉冲追踪实验表明,d1861的agnoprotein合成速率比WT的agnoprotein慢,其周转时间为1小时,而WT的agnoprotein为3小时。d1861的agnoprotein合成速率降低可以通过核酸酶S1分析来解释,在该分析中,编码agnoprotein的d1861 16 S RNA的主要前导序列与WT 16 S RNA的主要前导序列相比,含量显著降低。此外,对d1861 16 S RNA前导序列5'端潜在二级结构的分析揭示了稳定的结构,其中agnoprotein的起始密码子被隔离在一个茎中。本文讨论了RNA二级结构在调节agnoprotein合成中的作用。