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适配体介导的小分子配体摄取。

Aptamer-enabled uptake of small molecule ligands.

机构信息

Iowa State University, Ames, IA, USA.

Ames National Laboratory, Ames, IA, USA.

出版信息

Sci Rep. 2018 Oct 24;8(1):15712. doi: 10.1038/s41598-018-33887-w.

Abstract

The relative ease of isolating aptamers with high specificity for target molecules suggests that molecular recognition may be common in the folds of natural RNAs. We show here that, when expressed in cells, aptamers can increase the intracellular concentrations of their small molecule ligands. We have named these aptamers as DRAGINs (Drug Binding Aptamers for Growing Intracellular Numbers). The DRAGIN property, assessed here by the ability to enhance the toxicity of their ligands, was found for some, but not all, aminoglycoside aptamers. One aptamer protected cells against killing by its ligand. Another aptamer promoted killing as a singlemer and protected against killing as a tandemer. Based on a mathematical model, cell protection vs. killing is proposed as governed by aptamer affinity and access to the inner surface of the cell membrane, with the latter being a critical determinant. With RNA molecules proposed as the earliest functional polymers to drive the evolution of life, we suggest that RNA aptamer-like structures present in primitive cells might have selectively concentrated precursors for polymer synthesis. Riboswitches may be the evolved forms of these ancient aptamer-like "nutrient procurers". Aptamers with DRAGIN capability in the modern world could be applied for imaging cells, in synthetic cell constructs, or to draw drugs into cells to make "undruggable" targets accessible to small molecule inhibitors.

摘要

适体对靶分子具有高度特异性,易于分离,这表明分子识别可能在天然 RNA 的折叠中很常见。我们在这里表明,当适体在细胞中表达时,它们可以增加其小分子配体的细胞内浓度。我们将这些适体命名为 DRAGINs(用于增加细胞内数量的药物结合适体)。通过评估其配体毒性增强能力,我们发现了一些(但不是全部)氨基糖苷适体的 DRAGIN 特性。一种适体可以保护细胞免受其配体的杀伤。另一种适体作为单体促进杀伤,并作为二聚体保护免受杀伤。基于数学模型,提出了细胞保护与杀伤取决于适体亲和力和进入细胞膜内表面的能力,后者是一个关键决定因素。由于 RNA 分子被认为是最早驱动生命进化的功能聚合物,我们推测原始细胞中存在的 RNA 适体样结构可能选择性地浓缩了聚合物合成的前体。核酶可能是这些古老的适体样“营养获取者”的进化形式。在现代世界中,具有 DRAGIN 能力的适体可用于细胞成像、合成细胞结构,或吸引药物进入细胞,使小分子抑制剂能够接触到“不可用药”的靶标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/041e/6200808/6ada0fb9bbe5/41598_2018_33887_Fig1_HTML.jpg

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