Hogg Matthew, Cooper Wendy, Reha-Krantz Linda, Wallace Susan S
Department of Microbiology and Molecular Genetics, University of Vermont, Burlington, Vermont 05405, USA.
Nucleic Acids Res. 2006 May 10;34(9):2528-35. doi: 10.1093/nar/gkl300. Print 2006.
The kinetics of forming a proper Watson-Crick base pair as well incorporating bases opposite furan, an abasic site analog, have been well characterized for the B Family replicative DNA polymerase from bacteriophage T4. Structural studies of these reactions, however, have only been performed with the homologous enzyme from bacteriophage RB69. In this work, the homologous enzymes from RB69 and T4 were compared in parallel reactions to determine the relative abilities of the two polymerases to incorporate correct nucleotides as well as to form improper pairings. The kinetic rates for three different exonuclease mutants for each enzyme were measured for incorporation of an A opposite T and an A opposite furan as well as for the formation of A:C and T:T mismatches. The T4 exonuclease mutants were all approximately 2- to 7-fold more efficient than the corresponding RB69 exonuclease mutants depending on whether a T or furan was in the templating position and which exonuclease mutant was used. The rates for mismatch formation by T4 were significantly reduced compared with incorporation opposite furan, much more so than the corresponding RB69 mutant. These results show that there are kinetic differences between the two enzymes but they are not large enough to preclude structural assumptions for T4 DNA polymerase based on the known structure of the RB69 DNA polymerase.
对于来自噬菌体T4的B家族复制性DNA聚合酶,形成合适的沃森-克里克碱基对以及在呋喃(一种无碱基位点类似物)对面掺入碱基的动力学已得到充分表征。然而,这些反应的结构研究仅使用了来自噬菌体RB69的同源酶进行。在这项工作中,对来自RB69和T4的同源酶进行了平行反应比较,以确定这两种聚合酶掺入正确核苷酸以及形成错误配对的相对能力。测量了每种酶的三种不同外切核酸酶突变体在T对面掺入A以及在呋喃对面掺入A的动力学速率,以及形成A:C和T:T错配的动力学速率。根据模板位置是T还是呋喃以及使用的是哪种外切核酸酶突变体,T4外切核酸酶突变体的效率均比相应的RB69外切核酸酶突变体高约2至7倍。与在呋喃对面掺入相比,T4形成错配的速率显著降低,比相应的RB69突变体降低得更多。这些结果表明,这两种酶之间存在动力学差异,但差异不足以排除基于RB69 DNA聚合酶已知结构对T4 DNA聚合酶进行结构假设。