Lechner R L, Richardson C C
J Biol Chem. 1983 Sep 25;258(18):11185-96.
This paper describes the construction of a DNA molecule containing a topologically stable structure that simulates a replication fork. This preformed DNA molecule is a circular duplex of 7.2 X 10(3) base pairs (M13mp6 DNA) from which arises, at a unique BamHI recognition site, a noncomplementary 5'-phosphoryl-terminated single strand of 237 nucleotides (SV40 DNA). This structure has two experimental attributes. 1) Templates for both leading and lagging strand synthesis exist as stable structures prior to any DNA synthesis. 2) DNA synthesis creates a cleavage site for the restriction endonuclease BamHI. Form I of T7 DNA polymerase, alone, catalyzes limited DNA synthesis at the preformed replication fork whereas Form II, alone, polymerizes less than 5 nucleotides. However, when T7 gene 4 protein is present, Form II of T7 DNA polymerase catalyzes rapid and extensive synthesis via a rolling circle mode. Kinetic analysis of this synthesis reveals that the fork moves at a rate of 300 bases/s at 30 degrees C. We conclude that the T7 gene 4 protein requires a single-stranded DNA binding site from which point it translocates to the replication fork where it functions as a helicase. The phage T4 DNA polymerase catalyzes DNA synthesis at this preformed replication fork in the presence of gene 4 protein, but the amount of DNA synthesized is less that 3% of the amount synthesized by the combination of Form II of T7 DNA polymerase and gene 4 protein. We conclude that T7 DNA polymerase and T7 gene 4 protein interact specifically during DNA synthesis at a replication fork.
本文描述了一种DNA分子的构建,该分子含有模拟复制叉的拓扑稳定结构。这种预先形成的DNA分子是一个7.2×10³碱基对的环状双链体(M13mp6 DNA),在一个独特的BamHI识别位点处产生一条237个核苷酸的非互补5'-磷酸化末端单链(SV40 DNA)。这种结构具有两个实验特性。1)在前导链和后随链合成的模板在任何DNA合成之前都以稳定结构存在。2)DNA合成产生了限制性内切酶BamHI的切割位点。单独的T7 DNA聚合酶I型催化在预先形成的复制叉处进行有限的DNA合成,而单独的II型聚合的核苷酸少于5个。然而,当存在T7基因4蛋白时,T7 DNA聚合酶II型通过滚环模式催化快速而广泛的合成。对这种合成的动力学分析表明,在30℃时复制叉以300个碱基/秒的速度移动。我们得出结论,T7基因4蛋白需要一个单链DNA结合位点,从该位点它转移到复制叉,在那里它作为解旋酶发挥作用。在基因4蛋白存在的情况下,噬菌体T4 DNA聚合酶催化在这个预先形成的复制叉处进行DNA合成,但合成的DNA量不到T7 DNA聚合酶II型和基因4蛋白组合合成量的3%。我们得出结论,T7 DNA聚合酶和T7基因4蛋白在复制叉处的DNA合成过程中特异性相互作用。