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首页> 外文期刊>Nucleosides, nucleotides and nucleic acids >Sequence-specific recognition of double-stranded DNA by synthetic minor groove binder conjugates. toward the construction of artificial site-specific deoxyribonucleases.
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Sequence-specific recognition of double-stranded DNA by synthetic minor groove binder conjugates. toward the construction of artificial site-specific deoxyribonucleases.

机译:合成的小沟结合物结合物对双链DNA的序列特异性识别。致力于构建人工特定位点的脱氧核糖核酸。

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摘要

Bis-conjugates of hairpin N-methylpyrrole/N-methylimidazole oligocarboxamide minor groove binders (MGB) possessing enhanced affinity and sequence-specificity for dsDNA were synthesized. Two hairpin MGBs were connected by their N-termini via an aminodiacetate linker. The binding of bis-MGB conjugates to the target DNA was studied by gel mobility retardation, footprinting, and circular dichroism; their affinity and binding mode in the DNA minor groove were determined. In order to functionalize the bis-MGB conjugates, DNA-cleaving agents such as phenanthroline or bipyridine were attached. Effective site-specific cleavage of target DNA in the presence of Cu(2+) ions was observed.
机译:合成发夹N-甲基吡咯/ N-甲基咪唑寡羧酰胺小沟结合剂(MGB)的双共轭物,其对dsDNA具有增强的亲和力和序列特异性。两个发夹型MGB通过其N末端通过氨基二乙酸酯连接子相连。通过凝胶迁移率延迟,足迹和圆二色性研究了bis-MGB共轭物与目标DNA的结合。确定它们在DNA小沟中的亲和力和结合模式。为了功能化双-MGB缀合物,连接了DNA裂解剂,例如菲咯啉或联吡啶。在存在Cu(2+)离子的情况下,观察到了目标DNA的有效位点特异性切割。

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