Hughes A J, Bryan S K, Chen H, Moses R E, McHenry C S
Department of Biochemistry, Biophysics, and Genetics, University of Colorado Health Sciences Center, Denver 80262.
J Biol Chem. 1991 Mar 5;266(7):4568-73.
DNA polymerase III of Escherichia coli requires multiple auxiliary factors to enable it to serve as a replicative complex. We demonstrate that auxiliary components of the DNA polymerase III holoenzyme, the gamma delta complex and beta subunit, markedly stimulate DNA polymerase II on long single-stranded templates. DNA polymerase II activity is enhanced by single-stranded DNA binding protein, but the stimulation by gamma delta and beta can be observed either in the absence or presence of single-stranded DNA binding protein. In contrast with DNA polymerase III, the requirement of DNA polymerase II for gamma delta cannot be bypassed by large excesses of the beta subunit at low ionic strength in the absence of the single-stranded DNA binding protein. The product of the DNA polymerase II-gamma delta-beta reaction on a uniquely primed single-stranded circle is of full template length; the reconstituted enzyme apparently is incapable of strand displacement synthesis. The possible biological implications of these observations are discussed.
大肠杆菌的DNA聚合酶III需要多种辅助因子才能作为复制复合体发挥作用。我们证明,DNA聚合酶III全酶的辅助成分,即γδ复合体和β亚基,能在长单链模板上显著刺激DNA聚合酶II。单链DNA结合蛋白可增强DNA聚合酶II的活性,但无论有无单链DNA结合蛋白,γδ和β亚基都能产生刺激作用。与DNA聚合酶III不同,在没有单链DNA结合蛋白且离子强度较低的情况下,大量过量的β亚基无法绕过DNA聚合酶II对γδ的需求。在独特引发的单链环上,DNA聚合酶II-γδ-β反应的产物具有完整的模板长度;重组酶显然无法进行链置换合成。本文讨论了这些观察结果可能的生物学意义。