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多非利特的荧光标记类似物,作为人醚-去极化相关基因(hERG)通道的高亲和力荧光偏振配体。

Fluorescently labeled analogues of dofetilide as high-affinity fluorescence polarization ligands for the human ether-a-go-go-related gene (hERG) channel.

作者信息

Singleton David H, Boyd Helen, Steidl-Nichols Jill V, Deacon Matt, Groot Marcel J de, Price David, Nettleton David O, Wallace Nora K, Troutman Matthew D, Williams Christine, Boyd James G

机构信息

Exploratory Medicinal Sciences and ADME Technology Group, Pfizer Global Research and Development, Groton, Connecticut 06340, USA.

出版信息

J Med Chem. 2007 Jun 28;50(13):2931-41. doi: 10.1021/jm0700565. Epub 2007 May 31.

Abstract

Novel fluorescent derivatives of dofetilide (1) have been synthesized. Analogues that feature a fluorescent probe attached through an aliphatic spacer to the central tertiary nitrogen of 1 have high affinity for the hERG channel, and affinity is dependent on both linker length and pendent dye. These variables have been optimized to generate Cy3B derivative 10e, which has hERG channel affinity equivalent to that of dofetilide. When bound to cell membranes expressing the hERG channel, 10e shows a robust increase in fluorescence polarization (FP) signal. In a FP binding assay using 10e as tracer ligand, Ki values for several known hERG channel blockers were measured and excellent agreement with the literature Ki values was observed over an affinity range of 2 nM to 3 muM. 10e blocks hERG channel current in electrophysiological patch clamp experiments, and computational docking experiments predict that the dofetilide core of 10e binds hERG channel in a conformation similar to that previously predicted for 1. These analogues enable high-throughput hERG channel binding assays that are rapid, economical, and predictive of test compounds' potential for prolonged QT liabilities.

摘要

已合成了新型多非利特(1)荧光衍生物。通过脂肪族间隔基连接荧光探针至1的中心叔氮的类似物对hERG通道具有高亲和力,且亲和力取决于连接子长度和侧链染料。已对这些变量进行优化以生成Cy3B衍生物10e,其对hERG通道的亲和力与多非利特相当。当与表达hERG通道的细胞膜结合时,10e的荧光偏振(FP)信号显著增强。在以10e作为示踪配体的FP结合试验中,测定了几种已知hERG通道阻滞剂的Ki值,在2 nM至3 μM的亲和力范围内观察到与文献中的Ki值高度一致。在电生理膜片钳实验中,10e可阻断hERG通道电流,并且计算对接实验预测10e的多非利特核心以类似于先前预测的1的构象结合hERG通道。这些类似物可实现高通量hERG通道结合试验,该试验快速、经济且可预测测试化合物导致QT间期延长的可能性。

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