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首页> 外文期刊>Nucleic Acids Research >Single molecule analysis of Thermus thermophilus SSB protein dynamics on single-stranded DNA
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Single molecule analysis of Thermus thermophilus SSB protein dynamics on single-stranded DNA

机译:单链DNA上嗜热栖热菌SSB蛋白动力学的单分子分析

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Single-stranded (ss) DNA binding (SSB) proteins play central roles in DNA replication, recombination and repair in all organisms. We previously showed that Escherichia coli (Eco) SSB, a homotetrameric bacterial SSB, undergoes not only rapid ssDNA-binding mode transitions but also one-dimensional diffusion (or migration) while remaining bound to ssDNA. Whereas the majority of bacterial SSB family members function as homotetramers, dimeric SSB proteins were recently discovered in a distinct bacterial lineage of extremophiles, the Thermus-Deinococcus group. Here we show, using single-molecule fluorescence resonance energy transfer (FRET), that homodimeric bacterial SSB from Thermus thermophilus (Tth) is able to diffuse spontaneously along ssDNA over a wide range of salt concentrations (20-500 mM NaCl), and that TthSSB diffusion can help transiently melt the DNA hairpin structures. Furthermore, we show that two TthSSB molecules undergo transitions among different DNA-binding modes while remaining bound to ssDNA. Our results extend our previous observations on homotetrameric SSBs to homodimeric SSBs, indicating that the dynamic features may be shared among different types of SSB proteins. These dynamic features of SSBs may facilitate SSB redistribution and removal on/from ssDNA, and help recruit other SSB-interacting proteins onto ssDNA for subsequent DNA processing in DNA replication, recombination and repair.
机译:单链(ss)DNA结合(SSB)蛋白在所有生物体的DNA复制,重组和修复中起着核心作用。我们以前表明,大肠杆菌(Eco)SSB,同型四聚细菌SSB,不仅经历快速的ssDNA结合模式转变,而且经历一维扩散(或迁移),同时保持与ssDNA的结合。尽管大多数细菌SSB家族成员起同型四聚体的作用,但最近在嗜热菌-嗜热球菌组的一种极端嗜热菌的细菌谱系中发现了二聚SSB蛋白。在这里,我们表明,使用单分子荧光共振能量转移(FRET),来自嗜热栖热菌(Tth)的同型二聚细菌SSB能够在很宽的盐浓度(20-500 mM NaCl)范围内沿着ssDNA自发扩散。 TthSSB扩散可以帮助暂时融化DNA发夹结构。此外,我们显示了两个TthSSB分子经历了不同的DNA结合模式之间的过渡,同时保持与ssDNA的结合。我们的结果将我们以前对同四聚体SSB的观察扩展到同二聚SSB,表明动态特征可能在不同类型的SSB蛋白之间共享。 SSB的这些动态特征可以促进SSB在ssDNA上的重新分布和去除,并有助于将其他与SSB相互作用的蛋白募集到ssDNA上,以便随后在DNA复制,重组和修复中进行DNA处理。

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