Maga G, Stucki M, Spadari S, Hübscher U
Istituto di Genetica Biochimica ed Evoluzionistica IGBE-CNR, Pavia, I-27100, Italy.
J Mol Biol. 2000 Jan 28;295(4):791-801. doi: 10.1006/jmbi.1999.3394.
An important not yet fully understood event in DNA replication is the DNA polymerase (pol) switch from pol alpha to pol delta. Indirect evidence suggested that the clamp loader replication factor C (RF-C) plays an important role, since a replication competent protein complex containing pol alpha, pol delta and RF-C could perform pol switching in the presence of proliferating cell nuclear antigen (PCNA). By using purified pol alpha/primase, pol delta, RF-C, PCNA and RP-A we show that: (i) RF-C can inhibit pol alpha in the presence of ATP prior to PCNA loading, (ii) RF-C decreases the affinity of pol alpha for the 3'OH primer ends, (iii) the inhibition of pol alpha by RF-C is released upon PCNA loading, (iv) ATP hydrolysis is required for PCNA loading and subsequent release of inhibition of pol alpha, (v) under these conditions a switching from pol alpha/primase to pol delta is evident. Thus, RF-C appears to be critical for the pol alpha to pol delta switching. Based on these results, a model is proposed in which RF-C induces the pol switching by sequestering the 3'-OH end from pol alpha and subsequently recruiting PCNA to DNA.
DNA复制过程中一个尚未被完全理解的重要事件是DNA聚合酶(pol)从polα转换为polδ。间接证据表明,钳位装载蛋白复制因子C(RF-C)起着重要作用,因为一个包含polα、polδ和RF-C的具有复制能力的蛋白复合物在增殖细胞核抗原(PCNA)存在的情况下能够进行聚合酶转换。通过使用纯化的polα/引发酶、polδ、RF-C、PCNA和RP-A,我们发现:(i)在PCNA装载之前,RF-C在ATP存在的情况下能够抑制polα;(ii)RF-C降低了polα对3'OH引物末端的亲和力;(iii)在PCNA装载后,RF-C对polα的抑制作用被解除;(iv)PCNA装载以及随后polα抑制作用的解除需要ATP水解;(v)在这些条件下,从polα/引发酶到polδ的转换是明显的。因此,RF-C似乎对于polα到polδ的转换至关重要。基于这些结果,我们提出了一个模型,其中RF-C通过从polα中隔离3'-OH末端并随后将PCNA招募到DNA上来诱导聚合酶转换。