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Molecular recognition of poly(A) by small ligands: an alternative method of analysis reveals nanomolar cooperative and shape-selective binding

机译:小配体对聚(A)的分子识别:另一种分析方法揭示了纳摩尔协同和形状选择结合

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摘要

A few drug-like molecules have recently been found to bind poly(A) and induce a stable secondary structure (Tm ≈ 60°C), even though this RNA homopolymer is single-stranded in the absence of a ligand. Here, we report results from experiments specifically designed to explore the association of small molecules with poly(A). We demonstrate that coralyne, the first small molecule discovered to bind poly(dA), binds with unexpectedly high affinity (Ka >107 M−1), and that the crescent shape of coralyne appears necessary for poly(A) binding. We also show that the binding of similar ligands to poly(A) can be highly cooperative. For one particular ligand, at least six ligand molecules are required to stabilize the poly(A) self-structure at room temperature. This highly cooperative binding produces very sharp transitions between unstructured and structured poly(A) as a function of ligand concentration. Given the fact that junctions between Watson–Crick and A·A duplexes are tolerated, we propose that poly(A) sequence elements and appropriate ligands could be used to reversibly drive transitions in DNA and RNA-based molecular structures by simply diluting/concentrating a sample about the poly(A)-ligand ‘critical concentration’. The ligands described here may also find biological or medicinal applications, owing to the 3′-polyadenylation of mRNA in living cells.
机译:最近发现,即使这种RNA均聚物在没有配体的情况下是单链的,一些药物样分子仍能结合poly(A)并诱导稳定的二级结构(Tm≈60°C)。在这里,我们报告了专门设计用于探索小分子与poly(A)缔合的实验结果。我们证明,珊瑚蛋白是第一个被发现与poly(dA)结合的小分子,其结合力出乎意料地高(Ka> 10 7 M -1 ),并且新月形珊瑚的形状似乎是聚(A)结合所必需的。我们还表明,相似的配体与poly(A)的结合可以高度协作。对于一种特定的配体,需要至少六个配体分子以在室温下稳定聚(A)的自结构。这种高度协作的结合在非结构化和结构化的poly(A)之间产生非常尖锐的过渡,这是配体浓度的函数。鉴于可以容忍Watson-Crick和A·A双链体之间的连接这一事实,我们建议可以通过简单地稀释/浓缩a来使用poly(A)序列元件和适当的配体来可逆地驱动基于DNA和RNA的分子结构的转变。关于聚(A)-配体“临界浓度”的样本。由于活细胞中mRNA的3'-聚腺苷酸化作用,此处描述的配体也可以找到生物学或医学用途。

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