Suppr超能文献

DNA 识别:吡咯(H)基聚酰胺的设计、合成和生物物理特性。

DNA recognition: design, synthesis and biophysical characteristics of pyrrole(H) based polyamides.

机构信息

Department of Chemistry and Division of Natural and Applied Sciences, 49423, USA.

出版信息

Med Chem. 2010 May;6(3):150-8. doi: 10.2174/1573406411006030150.

Abstract

N-Methyl imidazole (Im) and N-methyl pyrrole (Py)-containing polyamides that can form stacked dimers can be programmed to target specific DNA sequences in the minor groove of DNA and control gene expression. Polyamides are being investigated as potential medicinal agents for treating diseases including cancer. The naturally occurring polyamide distamycin binds as a dimer in the minor groove of DNA and recognizes sequences rich in A/T and T/A base pairs indiscriminately. Synthetic analogs of distamycin that incorporate N-methylimidazole into the heterocyclic core have been shown to bind to G/C rich sequences with a high degree of specificity. The purpose of this study is to investigate the behavior of polyamides containing the 2,5-linked N-methylpyrrole-2-carboxamide or pyrrole(H) [Py(H)] moiety upon binding to DNA. The synthesis and biophysical characteristics of two polyamides PyPyPyPy(H) 2 and ImPyPyPy(H) 3 designed to test the binding preference of a Py/Pyrrole(H) pairing [Py/Py(H)] and a [Im/Py(H)] is described. Studies utilizing circular dichroism, thermal denaturation (ΔT(M)), biosensor-surface plasmon resonance and DNase I footprinting show that an [Im/Py(H), 3] pairing prefers a G/C or C/G pairing whilst a [Py/Py(H), 2] pairing tolerates A/T or T/A base pairs and avoids a G/C base pair.

摘要

含 N-甲基咪唑 (Im) 和 N-甲基吡咯 (Py) 的聚酰胺可以形成堆叠二聚体,可被编程以靶向 DNA 小沟中特定的 DNA 序列并控制基因表达。聚酰胺正被作为治疗包括癌症在内的疾病的潜在药物进行研究。天然存在的聚酰胺放线菌素以二聚体的形式结合在 DNA 的小沟中,并且可以随机识别富含 A/T 和 T/A 碱基对的序列。已经证明,将 N-甲基咪唑引入杂环核心的放线菌素的合成类似物可以与富含 G/C 的序列高度特异性地结合。本研究的目的是研究含有 2,5-连接的 N-甲基吡咯-2-甲酰胺或吡咯 (H) [Py(H)] 部分的聚酰胺在与 DNA 结合时的行为。描述了两种聚酰胺 PyPyPyPy(H) 2 和 ImPyPyPy(H) 3 的合成和生物物理特性,旨在测试 Py/Pyrrole(H) 配对 [Py/Py(H)] 和 [Im/Py(H)] 的结合偏好。利用圆二色性、热变性 (ΔT(M))、生物传感器表面等离子体共振和 DNase I 足迹法的研究表明,[Im/Py(H), 3] 配对优先与 G/C 或 C/G 配对,而 [Py/Py(H), 2] 配对可以容忍 A/T 或 T/A 碱基对并避免 G/C 碱基对。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验