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Molecular View of Ligands Specificity for CAG Repeats in Anti-Huntington Therapy

机译:抗亨廷顿疗法中CAG重复配体特异性的分子观点

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Huntington's disease is a fatal and devastating neurodegenerative genetic disorder for which there is currently no cure. It is characterized by Huntingtin protein's mRNA transcripts with 36 or more CAG repeats. Inhibiting the formation of pathological complexes between these expanded transcripts and target proteins may be a valuable strategy against the disease. Yet, the rational design of molecules specifically targeting the expanded CAG repeats is limited by the lack of structural information. Here, we use well-tempered metadynamics-based free energy calculations to investigate pose and affinity of two ligands targeting CAG repeats for which affinities have been previously measured. The first consists of two 4-guanidinophenyl rings linked by an ester group. It is the most potent ligand identified so far, with K-d = 60(30) nM. The second consists of a 4-phenyl dihydroimidazole and 4-1H-indole dihydroimidazole connected by a C-C bond (K-d = 700(80) nM). Our calculations reproduce the experimental affinities and uncover the recognition pattern between ligands' and their RNA target. They also provide a molecular basis for the markedly different affinity of the two ligands for CAG repeats as observed experimentally. These findings may pave the way for a structure-based hit-to-lead optimization to further improve ligand selectivity toward CAG repeat-containing mRNAs.
机译:亨廷顿舞蹈病是一种致命的破坏性神经退行性遗传疾病,目前尚无法治愈。它的特征是具有36个或更多CAG重复序列的Huntingtin蛋白的mRNA转录物。抑制这些扩增的转录物和靶蛋白之间病理复合物的形成可能是抵抗该疾病的有价值的策略。然而,由于缺乏结构信息,专门针对扩展的CAG重复序列的分子的合理设计受到了限制。在这里,我们使用经过良好调整的基于元动力学的自由能计算来研究针对两个CAG重复序列的配体的位姿和亲和力,这些亲和力先前已被测量。第一个由两个通过酯基连接的4-胍基苯基环组成。它是迄今为止鉴定出的最有效的配体,K-d = 60(30)nM。第二个由4-苯基二氢咪唑和4-1H-吲哚二氢咪唑通过C-C键连接(K-d = 700(80)nM)。我们的计算重现了实验的亲和力,并揭示了配体及其RNA靶标之间的识别模式。它们还为实验观察到的两个配体对CAG重复的显着不同的亲和力提供了分子基础。这些发现可能为基于结构的“先导至先导”优化进一步铺平配体对含CAG重复序列的mRNA的方法铺平了道路。

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