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首页> 外文期刊>Journal of Medicinal Chemistry >Removal of Human Ether-a-go-go Related Gene (hERG) K~+ Channel Affinity through Rigidity: A Case of Clofilium Analogues
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Removal of Human Ether-a-go-go Related Gene (hERG) K~+ Channel Affinity through Rigidity: A Case of Clofilium Analogues

机译:通过刚性去除人类以太相关基因(hERG)K〜+通道亲和力:一例梭菌类似物

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摘要

Cardiotoxicity is a side effect that plagues modern drug design and is very often due to the off-target blockade of the human ether-a-go-go related gene (hERG) potassium channel. To better understand the structural determinants of this blockade, we designed and synthesized a series of 40 derivatives of clofilium, a class III antiarrhythmic agent. These were evaluated in radioligand binding and patch-clamp assays to establish structure?affinity relationships (SAR) for this potassium channel. Efforts were especially focused on studying the influence of the structural rigidity and the nature of the linkers composing the clofilium scaffold. It was shown that introducing triple bonds and oxygen atoms in the n-butyl linker of the molecule greatly reduced affinity without significantly modifying the pK_a of the essential basic nitrogen. These findings could prove useful in the first stages of drug discovery as a systematic way of reducing the risk of hERG K~+ channel blockade-induced cardiotoxicity.
机译:心脏毒性是困扰现代药物设计的一种副作用,并且通常是由于人类以走出相关基因(hERG)钾通道的脱靶阻滞作用所致。为了更好地了解这种阻断剂的结构决定因素,我们设计并合成了40种氯氟吡喃类衍生物(III类抗心律不齐药物)。在放射性配体结合和膜片钳测定法中对它们进行了评估,以建立该钾通道的结构亲和力关系(SAR)。努力尤其集中在研究结构刚度的影响以及组成clofilium支架的连接基的性质上。结果表明,在分子的正丁基连接基中引入三键和氧原子会大大降低亲和力,而不会显着改变基本碱性氮的pK_a。这些发现可能在药物研发的第一阶段被证明是有用的方法,可以作为一种系统的方法来降低hERG K +通道阻断引起的心脏毒性的风险。

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