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Chemical modification of Ce(IV)/EDTA-based artificial restriction DNA cutter for versatile manipulation of double-stranded DNA

机译:基于Ce(IV)/ EDTA的人工限制性DNA切割剂的化学修饰可用于双链DNA的多种操作

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摘要

A monophosphate group was attached to the terminus of pseudo-complementary peptide nucleic acid (pcPNA), and two of thus modified pcPNAs were combined with Ce(IV)/EDTA for site-selective hydrolysis of double-stranded DNA. The site-selective DNA scission was notably accelerated by this chemical modification of pcPNAs. These second-generation artificial restriction DNA cutters (ARCUTs) differentiated the target sequence so strictly that no scission occurred even when only one DNA base-pair was altered to another. By using two of the activated ARCUTs simultaneously, DNA substrate was selectively cut at two predetermined sites, and the desired fragment was clipped and cloned. The DNA scission by ARCUT was also successful even when the target site was methylated by methyltransferase and protected from the corresponding restriction enzyme. Furthermore, potentiality of ARCUT for manipulation of huge DNA has been substantiated by site-selective scission of genomic DNA of Escherichia coli (composed of 4,600,000 bp) at the target site. All these results indicate promising applications of ARCUTs for versatile purposes.
机译:将单磷酸基团连接至假互补肽核酸(pcPNA)的末端,并将两个这样修饰的pcPNA与Ce(IV)/ EDTA结合以进行双链DNA的位点选择性水解。 pcPNAs的这种化学修饰显着促进了位点选择性DNA的断裂。这些第二代人工限制性DNA切割剂(ARCUT)如此严格地区分了靶序列,即使只有一个DNA碱基对被改变为另一对,也不会发生分裂。通过同时使用两个激活的ARCUT,可在两个预定位点选择性切割DNA底物,然后剪切并克隆所需的片段。即使目标位点被甲基转移酶甲基化并免受相应的限制酶的保护,ARCUT的DNA切割也成功。此外,通过在靶位点选择性切割大肠杆菌基因组DNA(由460万bp组成),已经证实了ARCUT操纵巨大DNA的潜力。所有这些结果表明ARCUT的用途广泛。

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