Departamento de Biología Celular, Genética y Fisiología, Facultad de Ciencias, Universidad de Malaga Málaga, Spain.
Laboratoire de Microbiologie des Environnements Extrêmes, UMR 6197, Institut Français de Recherche pour l'Exploitation de la Mer, Université de Bretagne Occidentale Plouzané, France ; CNRS, UMR 6197, Laboratoire de Microbiologie des Environnements Extrêmes Plouzané, France.
Front Microbiol. 2014 Aug 7;5:403. doi: 10.3389/fmicb.2014.00403. eCollection 2014.
Replication slippage or slipped-strand mispairing involves the misalignment of DNA strands during the replication of repeated DNA sequences, and can lead to genetic rearrangements such as microsatellite instability. Here, we show that PolB and PolD replicative DNA polymerases from the archaeal model Pyrococcus abyssi (Pab) slip in vitro during replication of a single-stranded DNA template carrying a hairpin structure and short direct repeats. We find that this occurs in both their wild-type (exo+) and exonuclease deficient (exo-) forms. The slippage behavior of PabPolB and PabPolD, probably due to limited strand displacement activity, resembles that observed for the high fidelity P. furiosus (Pfu) DNA polymerase. The presence of PabPCNA inhibited PabPolB and PabPolD slippage. We propose a model whereby PabPCNA stimulates strand displacement activity and polymerase progression through the hairpin, thus permitting the error-free replication of repetitive sequences.
复制滑动或滑动链错配涉及在重复 DNA 序列的复制过程中 DNA 链的不对准,并且可能导致遗传重排,例如微卫星不稳定性。在这里,我们表明来自古细菌模型 Pyrococcus abyssi(Pab)的 PolB 和 PolD 复制 DNA 聚合酶在携带发夹结构和短直接重复的单链 DNA 模板的复制过程中外切酶缺失(exo-)和野生型(exo+)形式下在体外滑动。我们发现这种情况发生在它们的野生型(exo+)和外切酶缺失(exo-)形式中。PabPolB 和 PabPolD 的滑动行为可能是由于有限的链置换活性,类似于观察到的高保真度 P. furiosus(Pfu)DNA 聚合酶。PabPCNA 的存在抑制了 PabPolB 和 PabPolD 的滑动。我们提出了一种模型,其中 PabPCNA 刺激链置换活性和聚合酶通过发夹前进,从而允许重复序列的无错误复制。