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DNA communications by Type III restriction endonucleases-confirmation of 1D translocation over 3D looping

机译:通过III型限制性核酸内切酶进行DNA通讯-通过3D循环确认1D易位

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摘要

DNA cleavage by Type III restriction enzymes is governed strictly by the relative arrangement of recognition sites on a DNA substrate-endonuclease activity is usually only triggered by sequences in head-to-head orientation. Tens to thousands of base pairs can separate these sites. Long distance communication over such distances could occur by either one-dimensional (1D) DNA translocation or 3D DNA looping. To distinguish between these alternatives, we analysed the activity of EcoPI and EcoP15l on DNA catenanes in which the recognition sites were either on the same or separate rings. While substrates with a pair of sites located on the same ring were cleaved efficiently, catenanes with sites on separate rings were not cleaved. These results exclude a simple 3D DNA-looping activity. To characterize the interactions further, EcoPI was incubated with plasmids carrying two recognition sites interspersed with two 21res sites for site-specific recombination by Tn21 resolvase; inhibition of recombination would indicate the formation of stable DNA loops. No inhibition was observed, even under conditions where EcoPI translocation could also occur.
机译:III型限制酶对DNA的切割严格受DNA底物核酸内切酶活性上识别位点的相对排列的支配,通常仅由头对头方向的序列触发。数十至数千个碱基对可以分隔这些位点。通过一维(1D)DNA移位或3D DNA循环,可以发生这种距离的长距离通信。为了区分这些替代方案,我们分析了EcoPI和EcoP15l对DNA链烯的活性,其中识别位点位于相同或独立的环上。尽管具有在同一环上的一对位点的底物被有效地裂解,但是在分开的环上具有位点的链烯未被裂解。这些结果排除了简单的3D DNA环化活性。为了进一步表征相互作用,将EcoPI与携带两个识别位点的质粒一起温育,该识别位点散布有两个21res位点,以通过Tn21溶解酶进行位点特异性重组。重组的抑制将指示稳定的DNA环的形成。即使在也可能发生EcoPI易位的条件下,也未观察到抑制作用。

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