Center for Integrative Physiology and Molecular Medicine (CIPMM), Saarland University, Homburg, Germany.
Methods Mol Biol. 2023;2710:31-47. doi: 10.1007/978-1-0716-3425-7_3.
The transient receptor potential canonical (TRPC) ion channels play important biological roles, but their activation mechanisms are incompletely understood. Here, we describe recent methodological advances using small molecular probes designed for photopharmacology of TRPC channels by focusing on results obtained from the mouse olfactory system. These studies developed and used photoswitchable diacylglycerol (DAG) analogs for ultrarapid activation of native TRPC2 channels in vomeronasal sensory neurons and type B cells of the main olfactory epithelium. Further studies investigated the role of TRPC5 channels in prolactin regulation of dopamine neurons in the arcuate nucleus of the hypothalamus. Here, the first photoswitchable TRPC5 modulator, BTDAzo, was developed and shown to control endogenous TRPC5-based neuronal Ca responses in mouse brain slices. Thus, photoswitchable reagents are rapidly gaining widespread recognition for investigating various types of TRPC channels including TRPC2, TRPC3, TRPC5, and TRPC6, enabling to gain new insights into the gating mechanisms and functions of these channels.
瞬时受体电位经典型(TRPC)离子通道具有重要的生物学作用,但它们的激活机制尚不完全清楚。本文聚焦于从小鼠嗅觉系统中获得的结果,介绍了使用小分子探针进行光药理学 TRPC 通道的最新方法学进展。这些研究开发并使用了光可切换的二酰基甘油(DAG)类似物,可超快速激活嗅感觉神经元和主嗅觉上皮的 B 细胞中的天然 TRPC2 通道。进一步的研究探讨了 TRPC5 通道在弓状核中多巴胺神经元的催乳素调节中的作用。在此,开发了第一个光可切换的 TRPC5 调节剂 BTDAzo,并证明其可控制小鼠脑切片中内源性基于 TRPC5 的神经元 Ca 反应。因此,光可切换试剂正在迅速得到广泛认可,用于研究包括 TRPC2、TRPC3、TRPC5 和 TRPC6 在内的各种类型的 TRPC 通道,从而能够深入了解这些通道的门控机制和功能。