Granja-Galeano Gina, Dominguez-Rubio Ana Paula, Zappia C Daniel, Wolfson Manuel, Sanz-Blasco Sara, Aisemberg Julieta, Zorrilla-Zubilete Maria, Fernandez Natalia, Franchi Ana, Fitzsimons Carlos P, Monczor Federico
Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Buenos Aires, 1113, Argentina; Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Instituto de Investigaciones Farmacológicas (ININFA), Universidad de Buenos Aires, Buenos Aires, 1113, Argentina.
Laboratorio de Fisiopatología de la Preñez y el Parto, Centro de Estudios Farmacológicos y Botánicos (CEFyBO-UBA/CONICET). Facultad de Medicina, Universidad de Buenos Aires, Buenos Aires, Argentina.
Neuropharmacology. 2023 Nov 15;239:109674. doi: 10.1016/j.neuropharm.2023.109674. Epub 2023 Aug 2.
The molecular processes that underlie long-term memory formation involve signaling pathway activation by neurotransmitter release, which induces the expression of immediate early genes, such as Zif268, having a key role in memory formation. In this work, we show that the cannabinoid CB1 receptor signaling is necessary for the effects of dexamethasone on the behavioral response in an inhibitory avoidance task, on dexamethasone-induced ERK phosphorylation, and on dexamethasone-dependent Zif268 expression. Furthermore, we provide primary evidence for the mechanism responsible for this crosstalk between cannabinoid and glucocorticoid-mediated signaling pathways, showing that dexamethasone regulates endocannabinoid metabolism by inhibiting the activity of the Fatty acid amide hydrolase (FAAH), an integral membrane enzyme that hydrolyzes endocannabinoids and related amidated signaling lipids. Our results provide novel evidence regarding the role of the endocannabinoid system, and in particular of the CB1 receptor, as a mediator of the effects of glucocorticoids on the consolidation of aversive memories.
长期记忆形成背后的分子过程涉及神经递质释放激活信号通路,这会诱导即刻早期基因(如Zif268)的表达,该基因在记忆形成中起关键作用。在这项研究中,我们表明大麻素CB1受体信号传导对于地塞米松在抑制性回避任务中的行为反应、地塞米松诱导的ERK磷酸化以及地塞米松依赖性Zif268表达的影响是必需的。此外,我们为大麻素和糖皮质激素介导的信号通路之间这种相互作用的机制提供了初步证据,表明地塞米松通过抑制脂肪酸酰胺水解酶(FAAH)的活性来调节内源性大麻素代谢,FAAH是一种整合膜酶,可水解内源性大麻素和相关酰胺化信号脂质。我们的结果提供了关于内源性大麻素系统,特别是CB1受体作为糖皮质激素对厌恶记忆巩固作用的介质的作用的新证据。