Samadashwily G M, Mirkin S M
Department of Genetics, University of Illinois at Chicago 60612.
Gene. 1994 Nov 4;149(1):127-36. doi: 10.1016/0378-1119(94)90421-9.
Triplexes (triple helices) formed within DNA templates prior to or during DNA synthesis cause DNA polymerase to terminate [Samadashwily et al., EMBO J. 13 (1993) 4975-4983]. Here, we show that triplex-forming oligodeoxyribonucleotides (oligos) efficiently trap DNA polymerases at target DNA sequences within single-stranded (ss) templates. This was observed for all studied DNA polymerases, including Sequenase and the thermophilic Taq and Vent polymerases. The termination rate depends on the fine structure of a triplex, as well as on ambient conditions such as temperature and the concentration of magnesium ions. Inhibition of DNA synthesis was observed not only when triplexes blocked the path of DNA polymerase, but also when a polymerization primer was involved in triplex formation. Escherichia coli ss-binding (SSB) protein helps DNA polymerase overcome the triplex barrier, but with an efficiency dramatically dependent on the triplex configuration. These results describe a novel method for blocking DNA replication at target homopurine-homopyrimidine sequences by means of triplex-forming oligos in direct analogy with similar results during transcription.
在DNA合成之前或期间在DNA模板内形成的三链体(三螺旋)会导致DNA聚合酶终止作用[萨马达什维利等人,《欧洲分子生物学组织杂志》13 (1993) 4975 - 4983]。在此,我们表明形成三链体的寡脱氧核糖核苷酸(寡核苷酸)能在单链(ss)模板内的靶DNA序列处有效地捕获DNA聚合酶。所有研究的DNA聚合酶,包括测序酶以及嗜热的Taq和Vent聚合酶,均观察到这种情况。终止速率取决于三链体的精细结构以及诸如温度和镁离子浓度等环境条件。不仅当三链体阻碍DNA聚合酶的路径时观察到DNA合成受到抑制,而且当聚合引物参与三链体形成时也观察到这种情况。大肠杆菌单链结合(SSB)蛋白有助于DNA聚合酶克服三链体障碍,但其效率极大地取决于三链体的构型。这些结果描述了一种通过形成三链体的寡核苷酸在靶同源嘌呤 - 同源嘧啶序列处阻断DNA复制的新方法,这与转录过程中的类似结果直接类似。