School of Medical Sciences, Institute of Medical Sciences, University of Aberdeen, Foresterhill, Aberdeen AB25 2ZD, UK.
Nucleic Acids Res. 2011 Mar;39(4):1351-9. doi: 10.1093/nar/gkq975. Epub 2010 Oct 18.
Genome duplication requires not only unwinding of the template but also the displacement of proteins bound to the template, a function performed by replicative helicases located at the fork. However, accessory helicases are also needed since the replicative helicase stalls occasionally at nucleoprotein complexes. In Escherichia coli, the primary and accessory helicases DnaB and Rep translocate along the lagging and leading strand templates, respectively, interact physically and also display cooperativity in the unwinding of model forked DNA substrates. We demonstrate here that this cooperativity is displayed only by Rep and not by other tested helicases. ssDNA must be exposed on the leading strand template to elicit this cooperativity, indicating that forks blocked at protein-DNA complexes contain ssDNA ahead of the leading strand polymerase. However, stable Rep-DnaB complexes can form on linear as well as branched DNA, indicating that Rep has the capacity to interact with ssDNA on either the leading or the lagging strand template at forks. Inhibition of Rep binding to the lagging strand template by competition with SSB might therefore be critical in targeting accessory helicases to the leading strand template, indicating an important role for replisome architecture in promoting accessory helicase function at blocked replisomes.
基因组复制不仅需要模板的解旋,还需要将与模板结合的蛋白质移位,这一功能由位于叉处的复制解旋酶完成。然而,还需要辅助解旋酶,因为复制解旋酶偶尔会在核蛋白复合物处停滞。在大肠杆菌中,主要解旋酶 DnaB 和辅助解旋酶 Rep 分别沿着滞后链和前导链模板移动,它们在物理上相互作用,并在模型分叉 DNA 底物的解旋中显示出协同作用。我们在这里证明,这种协同作用仅由 Rep 显示,而不是由其他测试的解旋酶显示。ssDNA 必须在前导链模板上暴露才能引发这种协同作用,表明在聚合酶前导链之前的蛋白质-DNA 复合物处的叉被阻断包含 ssDNA。然而,稳定的 Rep-DnaB 复合物可以在线性和分支 DNA 上形成,表明 Rep 有能力在叉处与前导链模板或滞后链模板上的 ssDNA 相互作用。因此,通过与 SSB 竞争抑制 Rep 与滞后链模板的结合可能对将辅助解旋酶靶向前导链模板至关重要,这表明复制体结构在促进受阻复制体上的辅助解旋酶功能方面发挥着重要作用。