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A New Generation of Minor-Groove-Binding—Heterocyclic Diamidines That Recognize G·C Base Pairs in an AT Sequence Context

机译:在AT序列上下文中识别G·C碱基对的新一代的小沟槽结合-杂环二m。

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摘要

We review the preparation of new compounds with good solution and cell uptake properties that can selectively recognize mixed A·T and G·C bp sequences of DNA. Our underlying aim is to show that these new compounds provide important new biotechnology reagents as well as a new class of therapeutic candidates with better properties and development potential than other currently available agents. In this review, entirely different ways to recognize mixed sequences of DNA by modifying AT selective heterocyclic cations are described. To selectively recognize a G·C base pair an H-bond acceptor must be incorporated with AT recognizing groups as with netropsin. We have used pyridine, azabenzimidazole and thiophene-N-methylbenzimidazole GC recognition units in modules crafted with both rational design and empirical optimization. These modules can selectively and strongly recognize a single G·C base pair in an AT sequence context. In some cases, a relatively simple change in substituents can convert a heterocyclic module from AT to GC recognition selectivity. Synthesis and DNA interaction results for initial example lead modules are described for single G·C base pair recognition compounds. The review concludes with a description of the initial efforts to prepare larger compounds to recognize sequences of DNA with more than one G·C base pairs. The challenges and initial successes are described along with future directions.
机译:我们审查了具有良好溶液和细胞吸收特性的新化合物的制备,这些化合物可以选择性地识别DNA的A·T和G·C bp混合序列。我们的基本目标是表明,这些新化合物提供重要的新生物技术试剂以及与目前其他可用试剂相比具有更好特性和发展潜力的新型治疗候选物。在这篇综述中,描述了通过修饰AT选择性杂环阳离子来识别DNA混合序列的完全不同的方法。为了选择性地识别G·C碱基对,必须将H键受体与AT识别基团和netropsin结合在一起。我们在经过合理设计和经验优化的模块中使用了吡啶,氮杂苯并咪唑和噻吩-N-甲基苯并咪唑GC识别单元。这些模块可以在AT序列上下文中有选择地强烈识别单个G·C碱基对。在某些情况下,相对简单的取代基变化可以将杂环模块从AT转换为GC识别选择性。描述了单个G·C碱基对识别化合物的初始示例铅模块的合成和DNA相互作用结果。该综述以对制备更大的化合物以识别具有多个G·C碱基对的DNA序列的初步努力的描述作为结束。描述了挑战和初步成功以及未来的方向。

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