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Interactions between the RepB initiator protein of plasmid pMV158 and two distant DNA regions within the origin of replication

机译:质粒pMV158的RepB启动子蛋白与复制起点内两个遥远的DNA区域之间的相互作用

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摘要

Plasmids replicating by the rolling circle mode usually possess a single site for binding of the initiator protein at the origin of replication. The origin of pMV158 is different in that it possesses two distant binding regions for the initiator RepB. One region was located close to the site where RepB introduces the replication-initiating nick, within the nic locus; the other, the bind locus, is 84 bp downstream from the nick site. Binding of RepB to the bind locus was of higher affinity and stability than to the nic locus. Contacts of RepB with the bind and nic loci were determined through high-resolution footprinting. Upon binding of RepB, the DNA of the bind locus follows a winding path in its contact with the protein, resulting in local distortion and bending of the double-helix. On supercoiled DNA, simultaneous interaction of RepB with both loci favoured extrusion of the hairpin structure harbouring the nick site while causing a strong DNA distortion around the bind locus. This suggests interplay between the two RepB binding sites, which could facilitate loading of the initiator protein to the nic locus and the acquisition of the appropriate configuration of the supercoiled DNA substrate.
机译:通过滚环模式复制的质粒通常在复制起点具有用于结合起始蛋白的单个位点。 pMV158的起源是不同的,因为它对启动子RepB具有两个遥远的结合区。一个区域位于nic基因座附近,RepB引入复制起始切口的位置。另一个是结合位点,位于切口位点下游84 bp。 RepB与结合基因座的结合比与nic基因座的结合具有更高的亲和力和稳定性。 RepB与bind和nic位点的接触是通过高分辨率足迹确定的。结合RepB后,结合位点的DNA在与蛋白质接触时会遵循一条蜿蜒的路径,从而导致双螺旋的局部变形和弯曲。在超螺旋DNA上,RepB与两个基因座的同时相互作用有利于挤出带有缺口位点的发夹结构,同时在结合位点周围引起强烈的DNA畸变。这表明两个RepB结合位点之间的相互作用,这可能有助于将起始蛋白装载到nic位点,并获得超螺旋DNA底物的适当构型。

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