Neuroscience Institute, Morehouse School of Medicine, Atlanta, GA 30310, USA.
Department of Biomedical Sciences, University of Missouri-Kansas City School of Medicine, Kansas City, MO 64108, USA.
Biomolecules. 2023 Mar 10;13(3):507. doi: 10.3390/biom13030507.
KB-R7943, an isothiourea derivative, is widely used as a pharmacological inhibitor of reverse sodium-calcium exchanger (NCX). It has been shown to have neuroprotective and analgesic effects in animal models; however, the detailed molecular mechanisms remain elusive. In the current study, we investigated whether KB-R7943 modulates acid-sensing ion channels (ASICs), a group of proton-gated cation channels implicated in the pathophysiology of various neurological disorders, using the whole-cell patch clamp techniques. Our data show that KB-R7943 irreversibly inhibits homomeric ASIC1a channels heterologously expressed in Chinese Hamster Ovary (CHO) cells in a use- and concentration-dependent manner. It also reversibly inhibits homomeric ASIC2a and ASIC3 channels in CHO cells. Both the transient and sustained current components of ASIC3 are inhibited. Furthermore, KB-R7943 inhibits ASICs in primary cultured peripheral and central neurons. It inhibits the ASIC-like currents in mouse dorsal root ganglion (DRG) neurons and the ASIC1a-like currents in mouse cortical neurons. The inhibition of the ASIC1a-like current is use-dependent and unrelated to its effect on NCX since neither of the other two well-characterized NCX inhibitors, including SEA0400 and SN-6, shows an effect on ASIC. Our data also suggest that the isothiourea group, which is lacking in other structurally related analogs that do not affect ASIC1a-like current, may serve as a critical functional group. In summary, we characterize KB-R7943 as a new ASIC inhibitor. It provides a novel pharmacological tool for the investigation of the functions of ASICs and could serve as a lead compound for developing small-molecule drugs for treating ASIC-related disorders.
KB-R7943 是一种异硫脲衍生物,广泛用作反向钠钙交换器 (NCX) 的药理学抑制剂。已证明它在动物模型中具有神经保护和镇痛作用;然而,其详细的分子机制仍不清楚。在本研究中,我们使用全细胞膜片钳技术研究了 KB-R7943 是否调节酸感应离子通道 (ASICs),ASICs 是一组与各种神经障碍的病理生理学有关的质子门控阳离子通道。我们的数据表明,KB-R7943 以使用依赖性和浓度依赖性方式不可逆地抑制异源表达于中国仓鼠卵巢 (CHO) 细胞中的同型 ASIC1a 通道。它还可逆地抑制 CHO 细胞中的同型 ASIC2a 和 ASIC3 通道。ASIC3 的瞬态和持续电流成分均被抑制。此外,KB-R7943 抑制原代培养的外周和中枢神经元中的 ASIC。它抑制小鼠背根神经节 (DRG) 神经元中的 ASIC 样电流和小鼠皮质神经元中的 ASIC1a 样电流。ASIC1a 样电流的抑制是使用依赖性的,与 NCX 无关,因为其他两种经过充分表征的 NCX 抑制剂,包括 SEA0400 和 SN-6,对 ASIC 均没有作用。我们的数据还表明,异硫脲基团可能是一个关键的功能基团,因为它在其他结构上相关的类似物中缺失,而这些类似物不会影响 ASIC1a 样电流。总之,我们将 KB-R7943 描述为一种新的 ASIC 抑制剂。它为研究 ASIC 的功能提供了一种新的药理学工具,并可能成为开发用于治疗 ASIC 相关疾病的小分子药物的先导化合物。