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首页> 外文期刊>Chemistry: A European journal >Promotion of Double-Duplex Invasion of Peptide Nucleic Acids through Conjugation with Nuclear Localization Signal Peptide
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Promotion of Double-Duplex Invasion of Peptide Nucleic Acids through Conjugation with Nuclear Localization Signal Peptide

机译:通过与核定位信号肽偶联促进肽核酸的双双链侵袭

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摘要

Pseudo-complementary peptide nucleic acid (pcPNA), as one of the most widely used synthetic DNA analogues, invades double-stranded DNA according to Watson-Crick rules to form invasion complexes. This unique mode of DNA recognition induces structural changes at the invasion site and can be used for a range of applications. In this paper, pcPNA is conjugated with a nuclear localization signal (NLS) peptide, and its invading activity is notably promoted both thermodynamically and kinetically. Thus, the double-duplex invasion complex is formed promptly at low pcPNA concentrations under high salt conditions, where the invasion otherwise never occurs. Furthermore, NLS-modified pcPNA is successfully employed for site-selective DNA scission, and the targeted DNA is selectively cleaved under conditions that are not conducive for DNA cutters using unmodified pcPNAs. This strategy of pcPNA modification is expected to be advantageous and promising for a range of in vitro and in vivo applications.
机译:假互补肽核酸(pcPNA)作为使用最广泛的合成DNA类似物之一,根据沃森-克里克规则侵入双链DNA形成侵袭复合物。这种独特的DNA识别模式诱导入侵位点的结构变化,可用于一系列应用。在本文中,pcPNA与核定位信号(NLS)肽偶联,其侵袭活性在热力学和动力学上都得到了显着促进。因此,在高盐条件下,双双链体侵袭复合物在低 pcPNA 浓度下迅速形成,否则侵袭永远不会发生。此外,NLS修饰的pcPNA被成功地用于位点选择性DNA剪断,并且在不利于使用未修饰的pcPNA进行DNA切割的条件下选择性地切割目标DNA。这种pcPNA修饰策略有望在一系列体外和体内应用中具有优势和前景。

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