Cadman Chris J, Matson Steven W, McGlynn Peter
School of Medical Sciences, Institute of Medical Sciences University of Aberdeen, Foresterhill, Aberdeen AB25 2ZD, UK.
J Mol Biol. 2006 Sep 8;362(1):18-25. doi: 10.1016/j.jmb.2006.06.032. Epub 2006 Jun 30.
Many studies have demonstrated the need for processing of blocked replication forks to underpin genome duplication. UvrD helicase in Escherichia coli has been implicated in the processing of damaged replication forks, or the recombination intermediates formed from damaged forks. Here we show that UvrD can unwind forked DNA structures, in part due to the ability of UvrD to initiate unwinding from discontinuities within the phosphodiester backbone of DNA. UvrD does therefore have the capacity to target DNA intermediates of replication and recombination. Such an activity resulted in unwinding of what would be the parental duplex DNA ahead of either a stalled replication fork or a D-loop formed by recombination. However, UvrD had a substrate preference for fork structures having a nascent lagging strand at the branch point but no leading strand. Furthermore, at such structures the polarity of UvrD altered so that unwinding of the lagging strand predominated. This reaction is reminiscent of the PriC-Rep pathway of replication restart, suggesting that UvrD and Rep may have at least partially redundant functions.
许多研究表明,处理受阻的复制叉对于支撑基因组复制至关重要。大肠杆菌中的UvrD解旋酶与受损复制叉的处理或由受损叉形成的重组中间体有关。在这里,我们表明UvrD可以解开叉状DNA结构,部分原因是UvrD能够从DNA磷酸二酯主链内的不连续处开始解旋。因此,UvrD确实有能力靶向复制和重组的DNA中间体。这种活性导致在停滞的复制叉或重组形成的D环之前解开亲代双链DNA。然而,UvrD对在分支点具有新生滞后链但无前导链的叉状结构具有底物偏好。此外,在这种结构中,UvrD的极性发生改变,使得滞后链的解旋占主导。该反应让人联想到复制重新启动的PriC-Rep途径,表明UvrD和Rep可能至少具有部分冗余功能。