Zhang Wenke, Allen Stephanie, Roberts Clive J, Soultanas Panos
Centre for Biomolecular Sciences School of Chemistry, University of Nottingham, University Park, Nottingham NG7 2RD, United Kingdom.
J Bacteriol. 2006 Aug;188(15):5487-93. doi: 10.1128/JB.00339-06.
The essential Bacillus subtilis DnaD and DnaB proteins have been implicated in the initiation of DNA replication. Recently, DNA remodeling activities associated with both proteins were discovered that could provide a link between global or local nucleoid remodeling and initiation of replication. DnaD forms scaffolds and opens up supercoiled plasmids without nicking to form open circular complexes, while DnaB acts as a lateral compaction protein. Here we show that DnaD-mediated opening of supercoiled plasmids is accompanied by significant untwisting of DNA. The net result is the conversion of writhe (Wr) into negative twist (Tw), thus maintaining the linking number (Lk) constant. These changes in supercoiling will reduce the considerable energy required to open up closed circular plectonemic DNA and may be significant in the priming of DNA replication. By comparison, DnaB does not affect significantly the supercoiling of plasmids. Binding of the DnaD C-terminal domain (Cd) to DNA is not sufficient to convert Wr into negative Tw, implying that the formation of scaffolds is essential for duplex untwisting. Overall, our data suggest that the topological effects of the two proteins on supercoiled DNA are different; DnaD opens up, untwists and converts plectonemic DNA to a more paranemic form, whereas DnaB does not affect supercoiling significantly and condenses DNA only via its lateral compaction activity. The significance of these findings in the initiation of DNA replication is discussed.
枯草芽孢杆菌的必需蛋白DnaD和DnaB与DNA复制的起始有关。最近,发现了与这两种蛋白相关的DNA重塑活性,这可能在全局或局部类核重塑与复制起始之间建立联系。DnaD形成支架并打开超螺旋质粒而不产生切口以形成开环复合物,而DnaB作为侧向压缩蛋白起作用。在这里,我们表明DnaD介导的超螺旋质粒的打开伴随着DNA的显著解旋。最终结果是将扭曲(Wr)转化为负扭转(Tw),从而保持连接数(Lk)恒定。超螺旋的这些变化将减少打开闭合环状螺旋DNA所需的大量能量,并且可能在DNA复制的引发中起重要作用。相比之下,DnaB对质粒的超螺旋没有显著影响。DnaD C末端结构域(Cd)与DNA的结合不足以将Wr转化为负Tw,这意味着支架的形成对于双链解旋至关重要。总体而言,我们的数据表明这两种蛋白对超螺旋DNA的拓扑效应不同;DnaD打开、解旋并将螺旋DNA转化为更平行排列的形式,而DnaB对超螺旋没有显著影响,仅通过其侧向压缩活性使DNA浓缩。讨论了这些发现对DNA复制起始的意义。