Mossi R, Ferrari E, Hübscher U
Institute of Veterinary Biochemistry, University of Zürich-Irchel, Winterthurerstrasse 190, CH-8057 Zürich, Switzerland.
J Biol Chem. 1998 Jun 5;273(23):14322-30. doi: 10.1074/jbc.273.23.14322.
The joining of single-stranded breaks in double-stranded DNA is an essential step in many important processes such as DNA replication, DNA repair, and genetic recombination. Several data implicate a role for DNA ligase I in DNA replication, probably coordinated by the action of other enzymes and proteins. Since both DNA polymerases delta and epsilon show multiple functions in different DNA transactions, we investigated the effect of DNA ligase I on various DNA synthesis events catalyzed by these two essential DNA polymerases. DNA ligase I inhibited replication factor C-independent DNA synthesis by polymerase delta. Our results suggest that the inhibition may be due to DNA ligase I interaction with proliferating cell nuclear antigen (PCNA) and not to a direct interaction with the DNA polymerase delta itself. Strand displacement activity by DNA polymerase delta was also affected by DNA ligase I. The DNA polymerase delta holoenzyme (composed of DNA polymerase delta, PCNA, and replication factor C) was inhibited in the same way as the DNA polymerase delta core, strengthening the hypothesis of a PCNA interaction. Contrary to DNA polymerase delta, DNA synthesis by DNA polymerase epsilon was stimulated by DNA ligase I in a PCNA-dependent manner. We conclude that DNA ligase I displays different influences on the two multipotent DNA polymerases delta and epsilon through PCNA. This might be of importance in the selective involvement in DNA transactions such as DNA replication and various mechanisms of DNA repair.
双链DNA中单链断裂的连接是许多重要过程中的关键步骤,如DNA复制、DNA修复和基因重组。多项数据表明DNA连接酶I在DNA复制中发挥作用,可能由其他酶和蛋白质的作用协同完成。由于DNA聚合酶δ和ε在不同的DNA事务中都具有多种功能,我们研究了DNA连接酶I对这两种重要DNA聚合酶催化的各种DNA合成事件的影响。DNA连接酶I抑制了聚合酶δ介导的不依赖复制因子C的DNA合成。我们的结果表明,这种抑制可能是由于DNA连接酶I与增殖细胞核抗原(PCNA)相互作用,而非与DNA聚合酶δ本身直接相互作用所致。DNA聚合酶δ的链置换活性也受到DNA连接酶I的影响。DNA聚合酶δ全酶(由DNA聚合酶δ、PCNA和复制因子C组成)与DNA聚合酶δ核心受到相同方式的抑制,这强化了PCNA相互作用的假说。与DNA聚合酶δ相反,DNA连接酶I以依赖PCNA的方式刺激DNA聚合酶ε的DNA合成。我们得出结论,DNA连接酶I通过PCNA对两种多功能DNA聚合酶δ和ε表现出不同影响。这可能在DNA复制和各种DNA修复机制等DNA事务的选择性参与中具有重要意义。