Turner W J, Woodworth M E
Department of Microbiology, Miami University, Oxford, Ohio 45056, USA.
J Virol. 2001 Jun;75(12):5638-45. doi: 10.1128/JVI.75.12.5638-5645.2001.
Naturally arising variants of simian virus 40 (SV40), generated by serial passage of the virus at high multiplicities of infection, provide important insight into the role of transcription factor-binding sites in enhancing DNA replication. Although the variants that arise from numerous recombination events are the result of selective pressure to replicate more efficiently than the other variants in the infection, there is no transcription pressure. Therefore, it is interesting that a minimum of two viral Sp1 transcription factor-binding sites are retained and that host AP-1 and NF-1 transcription factor-binding sites are incorporated into the 100-bp regulatory region that maximizes DNA replication in these variants. We cotransfected COS-1 cells (that provide viral large T antigen for DNA replication) to examine the effect of transcription factor-binding sites on the replication of plasmid constructs that contain the SV40 origin of replication (ori). The level of relative replication efficiency (RRE) depends on the number and type of transcription factor-binding sites. Replication increases as the number of transcription factor-binding sites increases within the regulatory region of the variants; AP-1 sites are more effective than NF-1 transcription factor-binding sites. Competition between constructs in transfections magnifies the difference in their RREs. The results indicate that transcription factor-binding sites play an important role in enhancing DNA replication.
通过在高感染复数下对猿猴病毒40(SV40)进行连续传代产生的该病毒自然出现的变体,为转录因子结合位点在增强DNA复制中的作用提供了重要见解。尽管由众多重组事件产生的变体是在感染中比其他变体更有效地进行复制的选择压力的结果,但不存在转录压力。因此,有趣的是,至少保留了两个病毒Sp1转录因子结合位点,并且宿主AP-1和NF-1转录因子结合位点被纳入到使这些变体中的DNA复制最大化的100碱基对调控区域中。我们共转染COS-1细胞(其为DNA复制提供病毒大T抗原),以检查转录因子结合位点对含有SV40复制起点(ori)的质粒构建体复制的影响。相对复制效率(RRE)水平取决于转录因子结合位点的数量和类型。随着变体调控区域中转录因子结合位点数量的增加,复制增加;AP-1位点比NF-1转录因子结合位点更有效。转染中构建体之间的竞争放大了它们RRE的差异。结果表明转录因子结合位点在增强DNA复制中起重要作用。