Mishra Nigam M, Spitznagel Brittany D, Du Yu, Mohamed Yasmeen K, Qin Ying, Weaver C David, Emmitte Kyle A
Department of Pharmaceutical Sciences, UNT System College of Pharmacy, University of North Texas Health Science Center, Fort Worth, TX 76107, USA.
Department of Pharmacology, Vanderbilt University, Nashville, TN 37232, USA.
Molecules. 2024 Nov 21;29(23):5494. doi: 10.3390/molecules29235494.
Epilepsy of infancy with migrating focal seizures (EIMFS) is a rare, serious, and pharmacoresistant epileptic disorder often linked to gain-of-function mutations in the gene. encodes the sodium-activated potassium channel known as SLACK, making small molecule inhibitors of SLACK channels a compelling approach to the treatment of EIMFS and other epilepsies associated with mutations. In this manuscript, we describe a hit optimization effort executed within a series of 2-aryloxy--(pyrimidin-5-yl)acetamides that were identified via a high-throughput screen. We systematically prepared analogs in four distinct regions of the scaffold and evaluated their functional activity in a whole-cell, automated patch clamp (APC) assay to establish structure-activity relationships for wild-type (WT) SLACK inhibition. Two selected analogs were also profiled for selectivity versus other members of the Slo family of potassium channels, of which SLACK is a member, and versus a panel of structurally diverse ion channels. The same two analogs were evaluated for activity versus the WT mouse channel as well as two clinically relevant mutant human channels.
婴儿期迁移性局灶性癫痫发作(EIMFS)是一种罕见、严重且药物难治性癫痫疾病,常与该基因的功能获得性突变有关。该基因编码名为SLACK的钠激活钾通道,这使得SLACK通道的小分子抑制剂成为治疗EIMFS及其他与该突变相关癫痫的一种有吸引力的方法。在本手稿中,我们描述了在一系列通过高通量筛选鉴定出的2-芳氧基-γ-(嘧啶-5-基)乙酰胺内进行的先导化合物优化工作。我们在支架的四个不同区域系统地制备了类似物,并在全细胞自动膜片钳(APC)测定中评估了它们的功能活性,以建立野生型(WT)SLACK抑制的构效关系。还对两个选定的类似物针对钾通道Slo家族的其他成员(SLACK是其中一员)以及一组结构多样的离子通道进行了选择性分析。对这两个相同的类似物针对野生型小鼠通道以及两个临床相关的突变人类通道的活性进行了评估。