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肽核酸-连接子缀合物作为双链 DNA 靶位的单分子激活剂,用于位点选择性断裂。

PNA-NLS conjugates as single-molecular activators of target sites in double-stranded DNA for site-selective scission.

机构信息

Life Science Center of Tsukuba Advanced Research Alliance, University of Tsukuba, 1-1-1 Tennoudai, Tsukuba, Ibaraki 305-8577, Japan.

出版信息

Org Biomol Chem. 2013 Aug 28;11(32):5233-8. doi: 10.1039/c3ob40947c.

Abstract

Artificial DNA cutters have been developed by us in our previous studies by combining two strands of pseudo-complementary peptide nucleic acid (pcPNA) with Ce(IV)-EDTA-promoted hydrolysis. The pcPNAs have two modified nucleobases (2,6-diaminopurine and 2-thiouracil) instead of conventional A and T, and can invade double-stranded DNA to activate the target site for the scission. This system has been applied to site-selective scissions of plasmid, λ-phage, E. coli genomic DNA, and human genomic DNA. Here, we have reported a still simpler and more convenient DNA cutter obtained by conjugating peptide nucleic acid (PNA) with a nuclear localization signal (NLS) peptide. This new DNA cutter requires only one PNA strand (instead of two) bearing conventional (non-pseudo-complementary) nucleobases. This PNA-NLS conjugate effectively activated the target site in double-stranded DNA and induced site-selective scission by Ce(IV)-EDTA. The complex formation between the conjugate and DNA was concretely evidenced by spectroscopic results based on time-resolved fluorescence. The target scission site of this new system was straightforwardly determined by the Watson-Crick base pairing rule, and mismatched sequences were clearly discriminated. Importantly, even highly GC-rich regions, which are difficult to be targeted by a previous strategy using pcPNA, were successfully targeted. All these features of the present DNA cutter make it promising for various future applications.

摘要

我们在之前的研究中通过将两条假互补肽核酸(pcPNA)与 Ce(IV)-EDTA 促进的水解相结合,开发了人工 DNA 切割器。pcPNAs 有两个修饰碱基(2,6-二氨基嘌呤和 2-硫代尿嘧啶)代替常规的 A 和 T,可以侵入双链 DNA 以激活切割的靶位点。该系统已应用于质粒、λ噬菌体、大肠杆菌基因组 DNA 和人基因组 DNA 的位点选择性切割。在这里,我们报道了一种通过将肽核酸(PNA)与核定位信号(NLS)肽缀合而获得的更简单、更方便的 DNA 切割器。这种新的 DNA 切割器仅需要一条带有常规(非假互补)碱基的 PNA 链(而不是两条)。这种 PNA-NLS 缀合物通过 Ce(IV)-EDTA 有效地激活双链 DNA 中的靶位点,并诱导位点选择性切割。基于时间分辨荧光的光谱结果具体证明了复合物与 DNA 之间的形成。通过 Watson-Crick 碱基配对规则直接确定了该新系统的靶切割位点,并且可以清楚地区分错配序列。重要的是,即使是以前使用 pcPNA 的策略难以靶向的富含 GC 的区域也能成功靶向。该 DNA 切割器的所有这些特性使其有望在未来的各种应用中得到应用。

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