Reddy M K, Weitzel S E, von Hippel P H
Institute of Molecular Biology, University of Oregon, Eugene 97403.
Proc Natl Acad Sci U S A. 1993 Apr 15;90(8):3211-5. doi: 10.1073/pnas.90.8.3211.
The seven-protein bacteriophage T4 DNA replication complex can be manipulated in vitro to study mechanistic aspects of the elongation phase of DNA replication. Under physiological conditions, the processivity of DNA synthesis catalyzed by the T4 polymerase (gp43) is greatly increased by the interaction of this enzyme with its accessory proteins (gp44/62 and gp45) and the T4 single-stranded DNA binding protein (gp32). The assembly of this T4 holoenzyme requires hydrolysis of ATP by the gp44/62 complex. We demonstrate here that processive T4 holoenzyme-like DNA synthesis can be obtained without hydrolysis of ATP by simply adding gp45 to the T4 DNA polymerase at extremely high concentrations, effectively bypassing the ATPase subunits (gp44/62) of the accessory protein complex. The amount of gp45 required for the gp43-gp45 heteroassociation event is reduced by addition of the macromolecular crowding agent polyethylene glycol (PEG) as well as gp32. A chromatographic strategy involving PEG has been used to demonstrate the gp43-gp45 interaction. These results suggest that gp45 is ultimately responsible for increasing the processivity of DNA synthesis via a direct and functionally significant interaction with the T4 DNA polymerase. A corollary to this notion is that the specific role of the gp44/62 complex is to catalytically link gp45 to gp43.
由七种蛋白质组成的噬菌体T4 DNA复制复合体可在体外进行操作,以研究DNA复制延伸阶段的机制。在生理条件下,T4聚合酶(gp43)催化的DNA合成持续性会因该酶与其辅助蛋白(gp44/62和gp45)以及T4单链DNA结合蛋白(gp32)的相互作用而大大提高。这种T4全酶的组装需要gp44/62复合体水解ATP。我们在此证明,通过简单地以极高浓度向T4 DNA聚合酶中添加gp45,无需ATP水解就能获得持续性类似T4全酶的DNA合成,从而有效地绕过了辅助蛋白复合体的ATP酶亚基(gp44/62)。添加大分子拥挤剂聚乙二醇(PEG)以及gp32可减少gp43 - gp45异源缔合事件所需的gp45量。一种涉及PEG的色谱策略已被用于证明gp43 - gp45的相互作用。这些结果表明,gp45最终通过与T4 DNA聚合酶的直接且功能上重要的相互作用来负责提高DNA合成的持续性。这一观点的一个必然结果是,gp44/62复合体的特定作用是催化性地将gp45与gp43连接起来。