Institut de Biologie de l'Ecole Normale Supérieure (IBENS), Ecole Normale Supérieure, CNRS, INSERM, Université PSL, Paris F-75005, France.
Laboratoire d'Archéologie Moléculaire et Structurale (LAMS), CNRS UMR 8220, Sorbonne Université, Paris 75005, France.
ACS Chem Neurosci. 2024 Sep 18;15(18):3321-3343. doi: 10.1021/acschemneuro.4c00247. Epub 2024 Sep 6.
NMDA receptors (NMDARs) are glutamate-gated ion channels playing a central role in synaptic transmission and plasticity. NMDAR dysregulation is linked to various neuropsychiatric disorders. This is particularly true for GluN2B-containing NMDARs (GluN2B-NMDARs), which have major pro-cognitive, but also pro-excitotoxic roles, although their exact involvement in these processes remains debated. Traditional GluN2B-selective antagonists suffer from slow and irreversible effects, limiting their use in native tissues. We therefore developed OptoNAM-3, a photoswitchable negative allosteric modulator selective for GluN2B-NMDARs. OptoNAM-3 provided light-induced reversible inhibition of GluN2B-NMDAR activity with precise temporal control both in vitro and in vivo on the behavior of freely moving tadpoles. When bound to GluN2B-NMDARs, OptoNAM-3 displayed remarkable red-shifting of its photoswitching properties allowing the use of blue light instead of UV light to turn-off its activity, which we attributed to geometric constraints imposed by the binding site onto the azobenzene moiety of the ligand. This study therefore highlights the importance of the binding site in shaping the photochemical properties of azobenzene-based photoswitches. In addition, by enabling selective, fast, and reversible photocontrol of native GluN2B-NMDARs with in vivo compatible photochemical properties (visible light), OptoNAM-3 should be a useful tool for the investigation of the GluN2B-NMDAR physiology in native tissues.
NMDA 受体(NMDARs)是谷氨酸门控离子通道,在突触传递和可塑性中发挥核心作用。NMDAR 失调与各种神经精神疾病有关。这尤其适用于含有 GluN2B 的 NMDAR(GluN2B-NMDAR),它们具有主要的促认知作用,但也具有促兴奋毒性作用,尽管它们在这些过程中的确切作用仍存在争议。传统的 GluN2B 选择性拮抗剂具有缓慢和不可逆的作用,限制了它们在天然组织中的应用。因此,我们开发了 OptoNAM-3,这是一种对 GluN2B-NMDAR 具有选择性的光可切换负变构调节剂。OptoNAM-3 在体外和体内自由游动的蝌蚪行为上都提供了光诱导的 GluN2B-NMDAR 活性的可逆抑制,具有精确的时间控制。当与 GluN2B-NMDAR 结合时,OptoNAM-3 显示出其光开关特性的显著红移,允许使用蓝光而不是紫外线来关闭其活性,我们将其归因于结合位点对配体的偶氮苯部分施加的几何限制。因此,这项研究强调了结合位点在塑造基于偶氮苯的光开关的光化学性质方面的重要性。此外,OptoNAM-3 通过具有与体内兼容的光化学性质(可见光)的对天然 GluN2B-NMDAR 进行选择性、快速和可逆的光控,应该成为研究天然组织中 GluN2B-NMDAR 生理学的有用工具。