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首页> 外文期刊>Journal of Molecular Biology >Ultrafast redistribution of E. coli SSB along Long single-stranded DNA via intersegment transfer
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Ultrafast redistribution of E. coli SSB along Long single-stranded DNA via intersegment transfer

机译:通过段间转移,沿长单链DNA超快速重新分布大肠杆菌SSB

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Single-stranded DNA binding proteins (SSBs) selectively bind single-stranded DNA (ssDNA) and facilitate recruitment of additional proteins and enzymes to their sites of action on DNA. SSB can also locally diffuse on ssDNA, which allows it to quickly reposition itself while remaining bound to ssDNA. In this work, we used a hybrid instrument that combines single-molecule fluorescence and force spectroscopy to directly visualize the movement of Escherichia coli SSB on long polymeric ssDNA. Long ssDNA was synthesized without secondary structure that can hinder quantitative analysis of SSB movement. The apparent diffusion coefficient of E. coli SSB thus determined ranged from 70,000 to 170,000 nt2/s, which is at least 600 times higher than that determined from SSB diffusion on short ssDNA oligomers, and is within the range of values reported for protein diffusion on double-stranded DNA. Our work suggests that SSB can also migrate via a long-range intersegment transfer on long ssDNA. The force dependence of SSB movement on ssDNA further supports this interpretation.
机译:单链DNA结合蛋白(SSB)选择性结合单链DNA(ssDNA),并促进其他蛋白质和酶募集到它们对DNA的作用位点。 SSB还可以在ssDNA上局部扩散,从而使其能够快速重新定位,同时保持与ssDNA的结合。在这项工作中,我们使用了一种结合了单分子荧光和力谱的混合仪器,以直接可视化长单链ssDNA上大肠杆菌SSB的运动。合成的长ssDNA没有二级结构,二级结构可能会阻碍SSB运动的定量分析。因此确定的大肠杆菌SSB的表观扩散系数在70,000至170,000 nt2 / s的范围内,比在短ssDNA寡聚物上从SSB扩散确定的表观扩散系数至少高600倍,并且在所报道的蛋白质扩散的数值范围内。双链DNA。我们的工作表明,SSB还可以通过长片段ssDNA上的长片段间转移迁移。 SSB运动对ssDNA的力依赖性进一步支持了这种解释。

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