Charette M F, Weaver D T, DePamphilis M L
Nucleic Acids Res. 1986 Apr 25;14(8):3343-62. doi: 10.1093/nar/14.8.3343.
DNA synthesis by phage T4 DNA polymerase is arrested at specific sequences in single-stranded DNA templates. To determine whether or not T4 DNA polymerase accessory proteins 32, 44, 45 and 62 eliminated recognition of these arrest sites, unique primer-templates were constructed in which DNA synthesis began at a DNA primer located at different distances from palindromic and nonpalindromic arrest sites. Nucleotide positions that caused polymerase to pause or leave the template were identified by sequence analysis of 5'-end labeled nascent DNA chains. Stable hairpin structures at palindromic sequences were confirmed by acetylation of single-stranded sequences with bromoacetaldehyde. Our results confirmed that these T4 DNA polymerase accessory proteins stimulated T4 DNA polymerase activity and processivity on natural as well as homopolymer primer-templates. However, they did not alter recognition of DNA synthesis arrest sites by T4 DNA polymerase. Extensive DNA synthesis resulted from an increased rate of translocation and/or processivity to the same extent over all DNA sequences.
噬菌体T4 DNA聚合酶的DNA合成在单链DNA模板中的特定序列处会停止。为了确定T4 DNA聚合酶辅助蛋白32、44、45和62是否消除了对这些停止位点的识别,构建了独特的引物-模板,其中DNA合成从位于距回文和非回文停止位点不同距离的DNA引物处开始。通过对5'-末端标记的新生DNA链进行序列分析,确定了导致聚合酶暂停或离开模板的核苷酸位置。通过用溴乙醛对单链序列进行乙酰化,证实了回文序列处稳定的发夹结构。我们的结果证实,这些T4 DNA聚合酶辅助蛋白在天然以及同聚物引物-模板上刺激了T4 DNA聚合酶的活性和持续合成能力。然而,它们并没有改变T4 DNA聚合酶对DNA合成停止位点的识别。在所有DNA序列上,广泛的DNA合成是由相同程度的转位速率增加和/或持续合成能力增强导致的。