首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Structural analyses of the bacterial primosomal protein DnaB reveal that it is a tetramer and forms a complex with a primosomal re-initiation protein
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Structural analyses of the bacterial primosomal protein DnaB reveal that it is a tetramer and forms a complex with a primosomal re-initiation protein

机译:细菌原始基因组蛋白DnaB的结构分析表明它是四聚体并与原始基因组重新启动蛋白形成复合物

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摘要

The DnaB primosomal protein from Gram-positive bacteria plays a key role in DNA replication and restart as a loader protein for the recruitment of replisome cascade proteins. Previous investigations have established that DnaB is composed of an N-terminal domain, a middle domain, and a C-terminal domain. However, structural evidence for how DnaB functions at the atomic level is lacking. Here, we report the crystal structure of DnaB, encompassing the N-terminal and middle domains (residues 1–300), from Geobacillus stearothermophilus (GstDnaB1–300) at 2.8 Å resolution. Our structure revealed that GstDnaB1–300 forms a tetramer with two basket-like architectures, a finding consistent with those from solution studies using analytical ultracentrifugation. Furthermore, our results from both GST pulldown assays and analytical ultracentrifugation show that GstDnaB1–300 is sufficient to form a complex with PriA, the primosomal reinitiation protein. Moreover, with the aid of small angle X-ray scattering experiments, we also determined the structural envelope of full-length DnaB (GstDnaBFL) in solution. These small angle X-ray scattering studies indicated that GstDnaBFL has an elongated conformation and that the protruding density envelopes originating from GstDnaB1–300 could completely accommodate the GstDnaB C-terminal domain (residues 301–461). Taken together with biochemical assays, our results suggest that GstDnaB uses different domains to distinguish the PriA interaction and single-stranded DNA binding. These findings can further extend our understanding of primosomal assembly in replication restart.
机译:来自革兰氏阳性细菌的DnaB原核糖体蛋白在DNA复制中起关键作用,并作为装载蛋白重新启动,以募集复制性级联蛋白。先前的研究已经确定DnaB由N末端域,中间域和C末端域组成。但是,缺乏有关DnaB如何在原子水平上起作用的结构性证据。在这里,我们报道了嗜热脂肪地芽孢杆菌(GstDnaB1-300)在2.8Å分辨率下的DnaB晶体结构,包括N末端和中间域(残基1–300)。我们的结构表明,GstDnaB1-300形成具有两个篮状结构的四聚体,这一发现与使用分析超速离心进行溶液研究的结果一致。此外,我们从GST下拉试验和分析超速离心获得的结果表明,GstDnaB1-300足以与PrimA(原始染色体重新初始化蛋白)形成复合物。此外,借助小角度X射线散射实验,我们还确定了溶液中全长DnaB(GstDnaBFL)的结构包络。这些小角度X射线散射研究表明,GstDnaBFL具有细长的构型,并且源自GstDnaB1-300的突出密度包膜可以完全容纳GstDnaB C末端结构域(残基301-461)。结合生化分析,我们的结果表明GstDnaB使用不同的域来区分PriA相互作用和单链DNA结合。这些发现可以进一步扩展我们对复制重启中原核组装的理解。

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