Jongeneel C V, Bedinger P, Alberts B M
J Biol Chem. 1984 Oct 25;259(20):12933-8.
The T4 bacteriophage dda protein is a DNA-dependent ATPase and DNA helicase that is the product of an apparently nonessential T4 gene. We have examined its effects on in vitro DNA synthesis catalyzed by a purified, multienzyme T4 DNA replication system. When DNA synthesis is catalyzed by the T4 DNA polymerase on a single-stranded DNA template, the addition of the dda protein is without effect whether or not other replication proteins are present. In contrast, on a double-stranded DNA template, where a mixture of the DNA polymerase, its accessory proteins, and the gene 32 protein is required, the dda protein greatly stimulates DNA synthesis. The dda protein exerts this effect by speeding up the rate of replication fork movement; in this respect, it acts identically with the other DNA helicase in the T4 replication system, the T4 gene 41 protein. However, whereas a 41 protein molecule remains bound to the same replication fork for a prolonged period, the dda protein seems to be continually dissociating from the replication fork and rebinding to it as the fork moves. Some gene 32 protein is required to observe DNA synthesis on a double-stranded DNA template, even in the presence of the dda protein. However, there is a direct competition between this helix-destabilizing protein and the dda protein for binding to single-stranded DNA, causing the rate of replication fork movement to decrease at a high ratio of gene 32 protein to dda protein. As shown elsewhere, the dda protein becomes absolutely required for in vitro DNA synthesis when E. coli RNA polymerase molecules are bound to the DNA template, because these molecules otherwise stop fork movement (Bedinger, P., Hochstrasser, M., Jongeneel, C.V., and Alberts, B. M. (1983) Cell 34, 115-123).
T4噬菌体dda蛋白是一种依赖DNA的ATP酶和DNA解旋酶,它是一个明显非必需的T4基因的产物。我们研究了它对由纯化的多酶T4 DNA复制系统催化的体外DNA合成的影响。当T4 DNA聚合酶在单链DNA模板上催化DNA合成时,无论是否存在其他复制蛋白,添加dda蛋白都没有作用。相反,在双链DNA模板上,DNA聚合酶、其辅助蛋白和基因32蛋白的混合物是必需的,dda蛋白能极大地刺激DNA合成。dda蛋白通过加快复制叉移动速度来发挥这种作用;在这方面,它与T4复制系统中的另一种DNA解旋酶T4基因41蛋白的作用相同。然而,虽然一个41蛋白分子会长时间结合在同一个复制叉上,但dda蛋白似乎会不断从复制叉上解离,并随着复制叉移动而重新结合到它上面。即使在存在dda蛋白的情况下,在双链DNA模板上观察DNA合成也需要一些基因32蛋白。然而,这种螺旋不稳定蛋白和dda蛋白在与单链DNA结合方面存在直接竞争,导致在基因32蛋白与dda蛋白比例较高时复制叉移动速度降低。如在其他地方所示,当大肠杆菌RNA聚合酶分子结合到DNA模板上时,dda蛋白对于体外DNA合成变得绝对必需,因为否则这些分子会阻止复制叉移动(贝丁格,P.,霍克施特拉瑟,M.,琼内尔,C.V.,和艾伯茨,B.M.(1983年)《细胞》34卷,115 - 123页)。