Nievera Christian, Torgue Julien J-C, Grimwade Julia E, Leonard Alan C
Department of Biological Sciences, Florida Institute of Technology, 150 West University Boulevard, Melbourne, Florida 32901 USA.
Mol Cell. 2006 Nov 17;24(4):581-92. doi: 10.1016/j.molcel.2006.09.016.
DnaA occupies only the three highest-affinity binding sites in E. coli oriC throughout most of the cell cycle. Immediately prior to initiation of chromosome replication, DnaA interacts with additional recognition sites, resulting in localized DNA-strand separation. These two DnaA-oriC complexes formed during the cell cycle are functionally and temporally analogous to yeast ORC and pre-RC. After initiation, SeqA binds to hemimethylated oriC, sequestering oriC while levels of active DnaA are reduced, preventing reinitiation. In this paper, we investigate how resetting of oriC to the ORC-like complex is coordinated with SeqA-mediated sequestration. We report that oriC resets to ORC during sequestration. This was possible because SeqA blocked DnaA binding to hemimethylated oriC only at low-affinity recognition sites associated with GATC but did not interfere with occupation of higher-affinity sites. Thus, during the sequestration period, SeqA repressed pre-RC assembly while ensuring resetting of E. coli ORC.
在细胞周期的大部分时间里,DnaA仅占据大肠杆菌oriC中三个亲和力最高的结合位点。就在染色体复制起始之前,DnaA与其他识别位点相互作用,导致局部DNA链分离。在细胞周期中形成的这两种DnaA-oriC复合物在功能和时间上类似于酵母ORC和前复制复合体(pre-RC)。起始后,SeqA与半甲基化的oriC结合,在活性DnaA水平降低时隔离oriC,防止重新起始。在本文中,我们研究了oriC重置为ORC样复合物是如何与SeqA介导的隔离相协调的。我们报告说,在隔离期间oriC重置为ORC。这是可能的,因为SeqA仅在与GATC相关的低亲和力识别位点阻止DnaA与半甲基化的oriC结合,但不干扰高亲和力位点的占据。因此,在隔离期间,SeqA抑制前复制复合体的组装,同时确保大肠杆菌ORC的重置。