Yarranton G T, Gefter M L
Proc Natl Acad Sci U S A. 1979 Apr;76(4):1658-62. doi: 10.1073/pnas.76.4.1658.
Replication in vitro of the replicative form (RF) I DNA of bacteriophage varphiX174 requires the phage-induced cistron A (cisA) protein, the host rep protein, DNA-binding protein, ATP, and DNA polymerase III plus replication factors. The rep protein is a single-stranded DNA-dependent ATPase. In this paper we show that varphiX174 RF I DNA cut by the cisA protein acts as a duplex DNA cofactor for the rep protein ATPase activity, provided that DNA-binding protein is present. In this latter reaction the duplex DNA is unwound by the rep protein with concomitant hydrolysis of ATP. The extents of ATP hydrolysis, DNA unwinding, and, where appropriate, DNA synthesis are proportional to the amounts of DNA-binding protein present. Two ATP molecules are hydrolyzed per base pair unwound. We propose that the obligatory requirement for the cisA protein in the unwinding of varphiX174 RF I DNA is not simply due to its endonuclease activity but rather is due to its provision of a site for the binding of the rep protein. The rep protein in the presence of DNA-binding protein, but in the absence of cisA protein, unwinds duplex DNA when one strand extends to generate a single-stranded leader region preceding the duplex. We show that rep protein translocates along the leader single strand in a 5'-to-3' direction only and then invades the duplex DNA. The rep protein shows a directional specificity for translocation and unwinding. A model is presented to explain the mechanism of DNA unwinding catalyzed by the rep protein.
噬菌体φX174复制型(RF)I DNA的体外复制需要噬菌体诱导的顺反子A(cisA)蛋白、宿主rep蛋白、DNA结合蛋白、ATP以及DNA聚合酶III和复制因子。rep蛋白是一种依赖单链DNA的ATP酶。在本文中,我们表明,只要存在DNA结合蛋白,被cisA蛋白切割的φX174 RF I DNA可作为rep蛋白ATP酶活性的双链DNA辅助因子。在后者的反应中,双链DNA被rep蛋白解开,同时伴随着ATP的水解。ATP水解、DNA解旋以及在适当情况下的DNA合成程度与存在的DNA结合蛋白量成正比。每解开一对碱基对,就有两个ATP分子被水解。我们提出,在解开φX174 RF I DNA时对cisA蛋白的强制性需求并非仅仅因其内切酶活性,而是因其为rep蛋白提供了一个结合位点。在存在DNA结合蛋白但不存在cisA蛋白的情况下,当一条链延伸以在双链之前产生一个单链前导区域时,rep蛋白会解开双链DNA。我们表明,rep蛋白仅沿前导单链以5'至3'方向移位,然后侵入双链DNA。rep蛋白在移位和解旋方面表现出方向特异性。本文提出了一个模型来解释rep蛋白催化DNA解旋的机制。