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首页> 外文期刊>Nucleic acids research >Atomic force microscopy of the EcoKI Type I DNA restriction enzyme bound to DNA shows enzyme dimerization and DNA looping
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Atomic force microscopy of the EcoKI Type I DNA restriction enzyme bound to DNA shows enzyme dimerization and DNA looping

机译:与DNA结合的EcoKI I型DNA限制性酶的原子力显微镜显示酶二聚化和DNA环化

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摘要

Atomic force microscopy (AFM) allows the study of single protein–DNA interactions such as those observed with the Type I Restriction–Modification systems. The mechanisms employed by these systems are complicated and understanding them has proved problematic. It has been known for years that these enzymes translocate DNA during the restriction reaction, but more recent AFM work suggested that the archetypal EcoKI protein went through an additional dimerization stage before the onset of translocation. The results presented here extend earlier findings confirming the dimerization. Dimerization is particularly common if the DNA molecule contains two EcoKI recognition sites. DNA loops with dimers at their apex form if the DNA is sufficiently long, and also form in the presence of ATPγS, a non-hydrolysable analogue of the ATP required for translocation, indicating that the looping is on the reaction pathway of the enzyme. Visualization of specific DNA loops in the protein–DNA constructs was achieved by improved sample preparation and analysis techniques. The reported dimerization and looping mechanism is unlikely to be exclusive to EcoKI, and offers greater insight into the detailed functioning of this and other higher order assemblies of proteins operating by bringing distant sites on DNA into close proximity via DNA looping.
机译:原子力显微镜(AFM)可以研究单个蛋白质与DNA的相互作用,例如使用I型限制性酶切修饰系统观察到的相互作用。这些系统采用的机制很复杂,并且对它们的理解已被证明是有问题的。多年来已知这些酶在限制性反应中使DNA易位,但是最近的AFM研究表明,原型EcoKI蛋白在易位之前经历了另外的二聚化阶段。本文提供的结果扩展了先前的发现,证实了二聚化。如果DNA分子包含两个EcoKI识别位点,则二聚化尤其常见。如果DNA足够长,则DNA会在其顶端形成二聚体,并在ATPγS(易位所需的ATP的不可水解类似物)存在下形成,表明该环化是在酶的反应路径上。通过改进的样品制备和分析技术,可以实现蛋白质-DNA构建物中特定DNA环的可视化。报道的二聚化和环化机制不太可能是EcoKI所独有的,并且可以通过DNA环化使DNA上的远距离位点紧密接近,从而提供对该蛋白质和其他更高级别蛋白质组装体的详细功能的更深入了解。

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