Gourlie B B, Pigiet V, Breaux C B, Krauss M R, King C R, Benbow R M
J Virol. 1981 Jun;38(3):826-32. doi: 10.1128/JVI.38.3.826-832.1981.
Polyoma minichromosomes were isolated and fractionated on glycerol gradients as described by Gourlie et al. (J. Virol. 38:805-814, 1981). Specific assays for DNa polymerases alpha, beta, and gamma, DNA topoisomerase I, and RNase H were carried out on each fraction. The number of units of activity in each fraction was compared with the number of total polyoma and replicative intermediate DNA molecules in each fraction determined by quantitative electron microscopy (M. R. Krauss and R. M. Benbow, J. Virol. 38:815-825, 1981). DNA polymerase alpha cosedimented with polyoma replicative intermediate DNA molecules. DNA polymerase beta and DNA topoisomerase I activities sedimented with mature polyoma minichromosomes. Although the bulk of RNase H activity sedimented in the minichromosome region, the peak of activity was found one fraction behind the peak of mature minichromosomes. Virtually no DNA polymerase gamma activity cosedimented with polyoma minichromosomes.
按照古利等人(《病毒学杂志》38:805 - 814, 1981年)所述方法,分离多瘤微小染色体并在甘油梯度上进行分级分离。对每个级分进行DNA聚合酶α、β和γ、DNA拓扑异构酶I以及核糖核酸酶H的特异性检测。将每个级分中的活性单位数量与通过定量电子显微镜(M. R. 克劳斯和R. M. 本博,《病毒学杂志》38:815 - 825, 1981年)测定的每个级分中多瘤和复制中间体DNA分子的总数进行比较。DNA聚合酶α与多瘤复制中间体DNA分子共沉降。DNA聚合酶β和DNA拓扑异构酶I活性与成熟的多瘤微小染色体一起沉降。虽然大部分核糖核酸酶H活性在微小染色体区域沉降,但活性峰值出现在成熟微小染色体峰值之后的一个级分处。实际上没有DNA聚合酶γ活性与多瘤微小染色体共沉降。