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Predicting Electrophoretic Mobility of Protein-Ligand Complexes for Ligands from DNA-Encoded Libraries of Small Molecules

机译:从小分子DNA编码文库预测配体蛋白-配体的电泳迁移率

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Selection of target-binding ligands from DNA encoded libraries of small molecules (DELSMs) is a rapidly developing approach in drug-lead discovery. Methods of kinetic capillary electrophoresis (KCE) may facilitate highly efficient homogeneous selection of ligands from DELSMs. However, KCE methods require accurate prediction of electrophoretic mobilities of protein ligand complexes. Such prediction, in turn, requires a theory that would be applicable to DNA tags of different structures used in different DELSMs. Here we present such a theory. It utilizes a model of a globular protein connected, through a single point (small molecule), to a linear DNA tag containing a combination of alternating double-stranded and single-stranded DNA (dsDNA and ssDNA) regions of varying lengths. The theory links the unknown electrophoretic mobility of protein DNA complex with experimentally determined electrophoretic mobilities of the protein and DNA. Mobility prediction was initially tested by using a protein interacting with 18 ligands of various combinations of dsDNA and ssDNA regions, which mimicked different DELSMs. For all studied ligands, deviation of the predicted mobility from the experimentally determined value was within 11%. Finally, the prediction was tested for two proteins and two ligands with a DNA tag identical to those of DELSM manufactured by GlaxoSmithKline. Deviation between the predicted and experimentally determined mobilities did not exceed 5%. These results confirm the accuracy and robustness of our model, which makes KCE methods one step closer to their practical use in selection of drug leads, and diagnostic probes from DELSMs.
机译:从DNA编码的小分子文库(DELSM)中选择靶标结合配体是药物前导发现中发展迅速的方法。动态毛细管电泳(KCE)的方法可能有助于从DELSMs高效高效地均匀选择配体。但是,KCE方法需要准确预测蛋白质配体复合物的电泳迁移率。反过来,这种预测需要适用于不同DELSM中使用的不同结构的DNA标签的理论。在这里,我们提出这样的理论。它利用通过单个点(小分子)连接到线性DNA标签的球形蛋白质模型,该线性DNA标签包含不同长度的交替双链和单链DNA(dsDNA和ssDNA)区域的组合。该理论将蛋白质DNA复合物的未知电泳迁移率与实验确定的蛋白质和DNA电泳迁移率联系起来。最初通过使用与dsDNA和ssDNA区域的各种组合的18个配体相互作用的蛋白质来测试迁移率预测,该蛋白质模拟了不同的DELSM。对于所有研究的配体,预测迁移率与实验确定值的偏差在11%以内。最后,测试了预测的两个蛋白质和两个配体,它们的DNA标签与GlaxoSmithKline生产的DELSM相同。预测的和实验确定的迁移率之间的偏差不超过5%。这些结果证实了我们模型的准确性和鲁棒性,这使得KCE方法在选择药物导线和来自DELSMs的诊断探针方面更接近于实际应用。

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