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Structure and Cellular Dynamics of Deinococcus radiodurans Single-stranded DNA (ssDNA)-binding Protein (SSB)-DNA Complexes

机译:Deinococcus radiodurans单链DNA(ssDNA)结合蛋白(SSB)-DNA复合物的结构和细胞动力学

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摘要

The single-stranded DNA (ssDNA)-binding protein from the radiation-resistant bacterium Deinococcus radiodurans (DrSSB) functions as a homodimer in which each monomer contains two oligonucleotide-binding (OB) domains. This arrangement is exceedingly rare among bacterial SSBs, which typically form homotetramers of single-OB domain subunits. To better understand how this unusual structure influences the DNA binding and biological functions of DrSSB in D. radiodurans radiation resistance, we have examined the structure of DrSSB in complex with ssDNA and the DNA damage-dependent cellular dynamics of DrSSB. The x-ray crystal structure of the DrSSB-ssDNA complex shows that ssDNA binds to surfaces of DrSSB that are analogous to those mapped in homotetrameric SSBs, although there are distinct contacts in DrSSB that mediate species-specific ssDNA binding. Observations by electron microscopy reveal two salt-dependent ssDNA-binding modes for DrSSB that strongly resemble those of the homotetrameric Escherichia coli SSB, further supporting a shared overall DNA binding mechanism between the two classes of bacterial SSBs. In vivo, DrSSB levels are heavily induced following exposure to ionizing radiation. This accumulation is accompanied by dramatic time-dependent DrSSB cellular dynamics in which a single nucleoid-centric focus of DrSSB is observed within 1 h of irradiation but is dispersed by 3 h after irradiation. These kinetics parallel those of D. radiodurans postirradiation genome reconstitution, suggesting that DrSSB dynamics could play important organizational roles in DNA repair.
机译:耐辐射细菌Deinococcus radiodurans(DrSSB)的单链DNA(ssDNA)结合蛋白起同二聚体的作用,其中每个单体均包含两个寡核苷酸结合(OB)域。这种排列在细菌SSB中极为罕见,它们通常形成单OB结构域亚基的同四聚体。为了更好地了解这种异常结构如何影响DrSSB在D.radiusdurans辐射抗性中的DNA结合和生物学功能,我们检查了与SSDNA复合的DrSSB的结构以及依赖DNA损伤的DrSSB的细胞动力学。 DrSSB-ssDNA复合物的X射线晶体结构表明,ssDNA与DrSSB的表面结合,类似于在同四聚SSB中定位的表面,尽管在DrSSB中有不同的接触介导物种特异性ssDNA的结合。通过电子显微镜观察,发现DrSSB的两种盐依赖性ssDNA结合模式与同源四聚体大肠杆菌SSB的模式非常相似,进一步支持了两类细菌SSB之间共有的整体DNA结合机制。在体内,暴露于电离辐射后会严重诱导DrSSB水平。这种积累伴随着戏剧性的时间依赖性DrSSB细胞动力学,其中DrSSB的单个以核仁为中心的焦点在照射后1小时内观察到,但在照射后3 h分散。这些动力学与放射线虫(D. radiodurans)辐射后基因组重建的动力学相似,表明DrSSB动力学可以在DNA修复中发挥重要的组织作用。

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