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首页> 外文期刊>Journal of Molecular Biology >Scanning force microscopy of DNA translocation by the Type III restriction enzyme EcoP15I.
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Scanning force microscopy of DNA translocation by the Type III restriction enzyme EcoP15I.

机译:III型限制酶EcoP15I对DNA易位的扫描力显微镜检查。

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摘要

Type III restriction enzymes are multifunctional heterooligomeric enzymes that cleave DNA at a fixed position downstream of a non-symmetric recognition site. For effective DNA cleavage these restriction enzymes need the presence of two unmethylated, inversely oriented recognition sites in the DNA molecule. DNA cleavage was proposed to result from ATP-dependent DNA translocation, which is expected to induce DNA loop formation, and collision of two enzyme-DNA complexes. We used scanning force microscopy to visualise the protein interaction with linear DNA molecules containing two EcoP15I recognition sites in inverse orientation. In the presence of the cofactors ATP and Mg(2+), EcoP15I molecules were shown to bind specifically to the recognition sites and to form DNA loop structures. One of the origins of the protein-clipped DNA loops was shown to be located at an EcoP15I recognition site, the other origin had an unspecific position in between the two EcoP15I recognition sites. The data demonstrate for the first time DNA translocation by the Type III restriction enzyme EcoP15I using scanning force microscopy. Moreover, our study revealed differences in the DNA-translocation processes mediated by Type I and Type III restriction enzymes.
机译:III型限制酶是多功能异源寡聚酶,可在非对称识别位点下游的固定位置切割DNA。为了有效切割DNA,这些限制酶需要在DNA分子中存在两个未甲基化的,反向定向的识别位点。提出DNA裂解是由ATP依赖的DNA易位引起的,它有望诱导DNA环的形成以及两种酶-DNA复合物的碰撞。我们使用扫描力显微镜来可视化蛋白质与线性DNA分子的相互作用,该线性DNA分子包含两个反向排列的EcoP15I识别位点。在存在辅助因子ATP和Mg(2+)的情况下,EcoP15I分子显示出与识别位点特异性结合并形成DNA环结构。已显示蛋白质夹带的DNA环的起源之一位于EcoP15I识别位点,另一个起源在两个EcoP15I识别位点之间具有非特异性位置。数据首次使用扫描力显微镜证实了III型限制酶EcoP15I对DNA的转运。此外,我们的研究揭示了由I型和III型限制酶介导的DNA转运过程的差异。

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