Phelan Kevin D, Shwe U Thaung, Zheng Fang
Department of Neurobiology and Developmental Sciences, University of Arkansas for Medical Sciences, Little Rock, AR 72205, USA.
Department of Pharmacology and Toxicology, University of Arkansas for Medical Sciences, Little Rock, AR 72205, USA.
Pharmaceuticals (Basel). 2023 Sep 13;16(9):1291. doi: 10.3390/ph16091291.
Given the unique expression patterns and revelations of its critical involvement in a host of neurological disorders, the TRPC1/4/5 subgroup has become an intense target of drug development, and some compounds are now in clinical trials. However, little is known about the exact subunit composition of this subfamily of TRPC channels in various native tissues, and whether it has functional and pharmacological implications. In this study, we investigated the effects of two TRPC4 modulators located in the lateral septum, in which a metabotropic glutamate receptor (mGluR) agonist-induced plateau potential is mediated by TRPC channels composed of TRPC1 and TRPC4. Lateral septal neurons were recorded intracellularly in brain slices using sharp electrodes. Drugs were applied via bath superfusion. We showed that the plateau potential in mice lacking TRPC1 is modulated by ML204 and La in a manner that is like homomeric TRPC4 channels in artificial expression systems. However, the plateau potential that is primarily mediated by heteromeric TRPC1/4 channels in lateral septal neurons in wildtype mice was modulated differently by ML204 and La. Our data suggest that native homomeric TRPC4 channels and heteromeric TRPC1/4 channels are pharmacologically distinct, and the current drug development strategy regarding TRPC1/4/5 may need to be reevaluated.
鉴于TRPC1/4/5亚组独特的表达模式以及其在众多神经系统疾病中的关键作用,它已成为药物研发的重点目标,目前一些化合物正处于临床试验阶段。然而,对于该TRPC通道亚家族在各种天然组织中的具体亚基组成,以及其是否具有功能和药理学意义,我们却知之甚少。在本研究中,我们研究了位于外侧隔区的两种TRPC4调节剂的作用,其中代谢型谷氨酸受体(mGluR)激动剂诱导的平台电位由TRPC1和TRPC4组成的TRPC通道介导。使用尖锐电极在脑片中对外侧隔区神经元进行细胞内记录。通过浴灌流施加药物。我们发现,缺乏TRPC1的小鼠中的平台电位受ML204和镧的调节,其方式类似于人工表达系统中的同型TRPC4通道。然而,野生型小鼠外侧隔区神经元中主要由异源三聚体TRPC1/4通道介导的平台电位受ML204和镧的调节方式不同。我们的数据表明,天然的同型TRPC4通道和异源三聚体TRPC1/4通道在药理学上是不同的,目前关于TRPC1/4/5的药物研发策略可能需要重新评估。