Borowiec J A
Department of Biochemistry, New York University Medical Center, New York 10016.
J Virol. 1992 Sep;66(9):5248-55. doi: 10.1128/JVI.66.9.5248-5255.1992.
Mutation of the simian virus 40 (SV40) origin of replication (ori) has revealed the presence of three critical domains needed for DNA replication. The outer two domains, the AT tract and early palindrome element (EP), colocalize with DNA regions that become structurally altered in the presence of the SV40 large tumor antigen (T antigen) and ATP. Mutations within each domain were examined for their effect on the distortion of ori DNA by T antigen, as assayed by the sensitivity of DNA to KMnO4 oxidation. We have found that mutations in the AT tract that inhibit SV40 DNA replication also inhibit the distortion of the AT tract. Similarly, mutations in the EP inhibited the generation of structural changes in this element by T antigen. Although AT-tract mutations or mutations on the late side of ori affected structural changes only in the AT tract, certain EP mutations or mutations on the early side of ori also inhibited AT-tract distortion. Mutation of the flanking regions did not significantly affect either the affinity of T antigen for ori or the rate of binding to ori. We conclude from these results that the primary function of the flanking ori domains is to undergo structural changes required during the initiation of SV40 DNA replication. Moreover, our results suggest that the efficiency of replication initiation is significantly affected by the degree to which the flanking elements undergo a structural transition.
猴病毒40(SV40)复制起点(ori)的突变揭示了DNA复制所需的三个关键结构域的存在。外侧的两个结构域,即富含AT序列和早期回文元件(EP),与在SV40大T抗原(T抗原)和ATP存在时发生结构改变的DNA区域共定位。通过DNA对高锰酸钾氧化的敏感性测定,研究了每个结构域内的突变对T抗原引起的ori DNA扭曲的影响。我们发现,抑制SV40 DNA复制的富含AT序列中的突变也抑制了富含AT序列的扭曲。同样,EP中的突变抑制了T抗原在该元件中引起的结构变化。尽管富含AT序列的突变或ori晚期的突变仅影响富含AT序列中的结构变化,但某些EP突变或ori早期的突变也抑制了富含AT序列的扭曲。侧翼区域的突变对T抗原与ori的亲和力或与ori的结合速率均无显著影响。从这些结果我们得出结论,侧翼ori结构域的主要功能是经历SV40 DNA复制起始过程中所需的结构变化。此外,我们的结果表明,复制起始效率受到侧翼元件发生结构转变程度的显著影响。