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荧光标记 DNA 构建体的几何形状对荧光各向异性测定的影响。

Influence of the geometry of fluorescently labelled DNA constructs on fluorescence anisotropy assay.

机构信息

LifeB, National Centre for Biomolecular Research, Faculty of Science, Masaryk University, Brno, Czech Republic; DyNAbind GmbH, Dresden, Germany.

DyNAbind GmbH, Dresden, Germany.

出版信息

Biochem Biophys Res Commun. 2020 Dec 3;533(2):230-234. doi: 10.1016/j.bbrc.2020.04.025. Epub 2020 May 4.

Abstract

DNA-encoded chemical libraries (DECLs) are powerful tools for modern drug discovery. A DECL is a pooled mixture of small molecule compounds, each of which is tagged with a unique DNA sequence which functions as a barcode. After incubation with a drug target and washing to remove non-binders, the bound molecules are eluted and submitted for DNA sequencing to determine which molecules are binding the target. While the DECL technology itself is ultra-high throughput, the following re-synthesis of identified compounds for orthogonal validation experiments remains the bottleneck. Using existing DNA-small molecule conjugates directly for affinity measurements, as opposed to complete compound resynthesis, could accelerate the discovery process. To this end, we have tested various geometries of fluorescently-labelled DNA constructs for fluorescence anisotropy (FA) experiments. Minimizing the distance between the fluorescent moiety and ligand can maximize the correlation between ligand-protein interaction and corresponding change in fluorophore rotational freedom, thus leading to larger, easier to interpret changes in FA values. However, close proximity can also cause artifacts due to potentially promiscuous interactions between fluorophore and protein. By balancing these two opposite effects, we have identified applicable fluorescently labelled DNA constructs displaying either a single ligand or pairs of fragments for affinity measurement using a FA assay.

摘要

DNA 编码化学文库 (DECL) 是现代药物发现的有力工具。DECL 是小分子化合物的混合池,每个化合物都标记有独特的 DNA 序列,充当条形码。与药物靶标孵育并洗涤以去除非结合物后,结合的分子被洗脱并提交进行 DNA 测序,以确定哪些分子与靶标结合。虽然 DECL 技术本身具有超高的通量,但随后对鉴定化合物进行正交验证实验的重新合成仍然是瓶颈。直接使用现有的 DNA-小分子缀合物进行亲和力测量,而不是完全重新合成化合物,可以加速发现过程。为此,我们已经测试了各种荧光标记 DNA 构建体的荧光各向异性 (FA) 实验的几何形状。荧光部分和配体之间的距离最小化可以使配体-蛋白相互作用与荧光体旋转自由度的相应变化之间的相关性最大化,从而导致 FA 值的更大、更容易解释的变化。然而,近距离也可能由于荧光体和蛋白质之间潜在的混杂相互作用而导致伪影。通过平衡这两种相反的效果,我们已经确定了适用的荧光标记 DNA 构建体,它们可以使用 FA 测定法显示单个配体或一对片段进行亲和力测量。

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