Huber H E, Tabor S, Richardson C C
Department of Biological Chemistry, Harvard Medical School, Boston, Massachusetts 02115.
J Biol Chem. 1987 Nov 25;262(33):16224-32.
The DNA polymerase activity induced after bacteriophage T7 infection of Escherichia coli is found in a complex of two proteins, the T7 gene 5 protein and a host protein, thioredoxin. Gene 5 protein is a DNA polymerase and a 3' to 5' exonuclease. Thioredoxin binds tightly to the gene 5 protein and increases the processivity of polymerization some 1000-fold. Gene 5 protein forms a short-lived complex with the primer-template, poly(dA).oligo(dT), in the absence of Mg2+ and nucleotides. Thioredoxin increases the half-life of the preformed primer-template-polymerase complex from less than a second to approximately 5 min. The dissociation is accelerated by excess single-stranded DNA in an apparent second order reaction, indicating direct transfer of polymerase between DNA fragments. Thioredoxin also reduces the equilibrium dissociation constant, Kd, of the gene 5 protein -poly(dA).oligo(dT) complex 20- to 80-fold. The salt dependence of Kd indicates that thioredoxin stabilizes the primer-template-polymerase complex mainly through additional charge-charge interactions, increasing the estimated number of interactions from 2 to 7. The affinity of gene 5 protein for single-stranded DNA is at least 1000-fold higher than for double-stranded DNA and is little affected by thioredoxin. Under conditions of steady state synthesis the effect of thioredoxin on the polymerization rate is determined by two competing factors, an increase in processivity and a decrease of the dissociation rate of polymerase and replicated template.
在大肠杆菌受噬菌体T7感染后诱导产生的DNA聚合酶活性,存在于两种蛋白质的复合物中,即T7基因5蛋白和一种宿主蛋白硫氧还蛋白。基因5蛋白是一种DNA聚合酶,也是一种3'至5'核酸外切酶。硫氧还蛋白与基因5蛋白紧密结合,并使聚合反应的持续合成能力提高约1000倍。在没有Mg2+和核苷酸的情况下,基因5蛋白与引物模板聚(dA)·寡聚(dT)形成一种短暂存在的复合物。硫氧还蛋白将预先形成的引物模板 - 聚合酶复合物的半衰期从不到一秒增加到约5分钟。过量的单链DNA以明显的二级反应加速解离,表明聚合酶在DNA片段之间直接转移。硫氧还蛋白还使基因5蛋白 - 聚(dA)·寡聚(dT)复合物的平衡解离常数Kd降低20至80倍。Kd对盐的依赖性表明,硫氧还蛋白主要通过额外的电荷 - 电荷相互作用来稳定引物模板 - 聚合酶复合物,将估计的相互作用数量从2增加到7。基因5蛋白对单链DNA的亲和力比对双链DNA的亲和力至少高1000倍,并且几乎不受硫氧还蛋白的影响。在稳态合成条件下,硫氧还蛋白对聚合速率的影响由两个相互竞争的因素决定,即持续合成能力的增加和聚合酶与复制模板解离速率的降低。