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Rational Drug Design and High-Throughput Techniques for RNA Targets

机译:RNA靶标的合理药物设计和高通量技术

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摘要

RNA molecules are the only known molecules which possess the double property of being depository of genetic information, like DNA, and of displaying catalytic activities, like protein enzymes. RNA molecules intervene in all steps of gene expression and in many other biological activities. Like proteins, RNAs achieve those biological functions by adopting intricate three-dimensional folds and architectures. Further, as in protein sequences, RNA sequences contain signatures specific for three-dimensional motifs which participate in recognition and binding. In regulatory pathways, RNA molecules exist in equilibria between transient structures differentially stabilized by effectors such as proteins or cofactors. Therefore, RNA molecules display their potential as drug targets on different levels, namely in three-dimensional folds, in structural equilibria and in RNA-protein interfaces. Several examples will be described together with the already available techniques for combinatorial synthesis and high-t hroughput screening of potential drug and target RNA molecules.
机译:RNA分子是唯一具有双重性质的已知分子,其具有遗传信息(如DNA)的存储和显示催化活性(如蛋白质酶)的双重特性。 RNA分子干预基因表达的所有步骤以及许多其他生物学活动。像蛋白质一样,RNA通过采用复杂的三维折叠和结构来实现这些生物学功能。此外,如在蛋白质序列中一样,RNA序列包含对参与识别和结合的三维基序具有特异性的标记。在调节途径中,RNA分子平衡地存在于通过效应子(例如蛋白质或辅因子)稳定稳定的瞬时结构之间。因此,RNA分子在不同水平上(即在三维折叠中,在结构平衡中和在RNA-蛋白质界面中)显示出它们作为药物靶标的潜力。将结合潜在的药物和目标RNA分子的组合合成和高通量筛选技术,描述几个示例。

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