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合成DNA模板和PCR DNA模板上的单核苷酸特异性肽核酸-肽连接反应

Single-nucleotide-specific PNA-peptide ligation on synthetic and PCR DNA templates.

作者信息

Ficht Simon, Mattes Amos, Seitz Oliver

机构信息

Institut für Chemie, Humboldt-Universität zu Berlin, Brook-Taylor-Strasse 2, D-12489 Berlin, Germany.

出版信息

J Am Chem Soc. 2004 Aug 18;126(32):9970-81. doi: 10.1021/ja048845o.

Abstract

DNA-directed chemical synthesis has matured into a useful tool with applications such as fabrication of defined (nano)molecular architectures, evolution of amplifiable small-molecule libraries, and nucleic acid detection. Most commonly, chemical methods were used to join oligonucleotides under the control of a DNA or RNA template. The full potential of chemical ligation reactions can be uncovered when nonnatural oligonucleotide analogues that can provide new opportunities such as increased stability, DNA affinity, hybridization selectivity, and/or ease and accuracy of detection are employed. It is shown that peptide nucleic acid (PNA) conjugates, nonionic biostable DNA analogues, allowed the fashioning of highly chemoselective and sequence-selective peptide ligation methods. In particular, PNA-mediated native chemical ligations proceed with sequence selectivities and ligation rates that reach those of ligase-catalyzed oligodeoxynucleotide reactions. Usually, sequence-specific ligations can only be achieved by employing short-length probes, which show DNA affinities that are too low to allow stable binding to target segments in large, double-stranded DNA. It is demonstrated that the PNA-based ligation chemistry allowed the development of a homogeneous system in which rapid single-base mutation analyses can be performed even on double-stranded PCR DNA templates.

摘要

DNA 定向化学合成已发展成为一种有用的工具,可应用于构建特定的(纳米)分子结构、可扩增小分子文库的进化以及核酸检测等领域。最常见的是,化学方法用于在 DNA 或 RNA 模板的控制下连接寡核苷酸。当使用能够提供新机会(如增加稳定性、DNA 亲和力、杂交选择性和/或检测的简便性和准确性)的非天然寡核苷酸类似物时,化学连接反应的全部潜力就可以被挖掘出来。研究表明,肽核酸(PNA)缀合物,即非离子型生物稳定 DNA 类似物,能够实现高度化学选择性和序列选择性的肽连接方法。特别是,PNA 介导的天然化学连接反应的序列选择性和连接速率可达到连接酶催化的寡脱氧核苷酸反应的水平。通常,序列特异性连接只能通过使用短长度探针来实现,而这些探针显示出的 DNA 亲和力过低,无法与大的双链 DNA 中的靶片段稳定结合。研究证明,基于 PNA 的连接化学能够开发出一种均相系统,即使在双链 PCR DNA 模板上也能进行快速单碱基突变分析。

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