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星形胶质细胞中 2-花生四烯酸甘油信号的增强通过 miRNA-30b 的调节来维持突触功能。

Augmentation of 2-arachidonoylglycerol signaling in astrocytes maintains synaptic functionality by regulation of miRNA-30b.

机构信息

Department of Cellular and Integrative Physiology, University of Texas Health San Antonio, San Antonio, TX 78229, USA.

Department of Cellular and Integrative Physiology, University of Texas Health San Antonio, San Antonio, TX 78229, USA; Center for Biomedical Neuroscience, Joe R. and Teresa Lozano Long School of Medicine, University of Texas Health San Antonio, San Antonio, TX 78229, USA.

出版信息

Exp Neurol. 2023 Mar;361:114292. doi: 10.1016/j.expneurol.2022.114292. Epub 2022 Dec 5.

Abstract

2-Arachidonoylglycerol (2-AG), the most abundant endocannabinoid, displays anti-inflammatory and neuroprotective properties. Inhibition of 2-AG degradation by inactivation of monoacylglycerol lipase (MAGL), a key enzyme degrading 2-AG in the brain, alleviates neuropathology and improves synaptic and cognitive functions in animal models of neurodegenerative diseases. In particular, global inactivation of MAGL by genetic deletion of mgll enhances hippocampal long-term potentiation (LTP) and hippocampus-dependent learning and memory. However, our understanding of the molecular mechanisms by which chronic inactivation of MAGL enhances synaptic activity is still limited. Here, we provide evidence that pharmacological inactivation of MAGL suppresses hippocampal expression of miR-30b, a small non-coding microRNA, and upregulates expression of its targets, including ephrin type-B receptor 2 (ephB2), sirtuin1 (sirt1), and glutamate ionotropic receptor AMPA type subunit 2 (GluA2). Importantly, suppression of miR-30b and increase of its targets by inactivation of MAGL result primarily from inhibition of 2-AG metabolism in astrocytes, rather than in neurons. Inactivation of MAGL in astrocytes prevents miR-30b overexpression-induced impairments in synaptic transmission and long-term potentiation (LTP) in the hippocampus. Suppression of miR-30b expression by inactivation of MAGL is apparently associated with augmentation of 2-AG signaling, as 2-AG induces a dose-dependent decrease in expression of miR-30b. 2-AG- or MAGL inactivation-suppressed expression of miR-30b is not mediated via CB1R, but by peroxisome proliferator-activated receptor γ (PPARγ). This is further supported by the results showing that MAGL inactivation-induced downregulation of miR-30b and upregulation of its targets are attenuated by antagonism of PPARγ, but mimicked by PPARγ agonists. In addition, we observed that 2-AG-induced reduction of miR-30b expression is mediated via NF-kB signaling. Our study provides evidence that 2-AG signaling in astrocytes plays an important role in maintaining the functional integrity of synapses in the hippocampus by regulation of miR-30b expression.

摘要

2-花生四烯酸甘油(2-AG)是最丰富的内源性大麻素,具有抗炎和神经保护作用。通过失活单酰基甘油脂肪酶(MAGL)来抑制 2-AG 的降解,MAGL 是大脑中降解 2-AG 的关键酶,可减轻神经退行性疾病动物模型中的神经病理学并改善突触和认知功能。特别是通过基因敲除 mgll 使 MAGL 全局失活可增强海马长时程增强(LTP)和海马依赖性学习记忆。然而,我们对慢性抑制 MAGL 增强突触活性的分子机制的理解仍然有限。在这里,我们提供的证据表明,药理学抑制 MAGL 可抑制海马中微小非编码 microRNA miR-30b 的表达,并上调其靶标,包括 EphB 型受体 2(ephB2)、Sirtuin1(sirt1)和谷氨酸离子型受体 AMPA 型亚基 2(GluA2)的表达。重要的是,通过抑制 MAGL 的代谢,在星形胶质细胞而非神经元中抑制 miR-30b 的表达和增加其靶标。星形胶质细胞中 MAGL 的失活可防止 miR-30b 过表达诱导的海马突触传递和长时程增强(LTP)受损。MAGL 的失活通过抑制 miR-30b 表达明显与 2-AG 信号的增强相关,因为 2-AG 诱导 miR-30b 表达的剂量依赖性降低。MAGL 失活抑制 miR-30b 的表达并非通过 CB1R 介导,而是通过过氧化物酶体增殖物激活受体 γ(PPARγ)介导。通过拮抗 PPARγ 可减弱 MAGL 失活诱导的 miR-30b 下调及其靶标的上调,并且通过 PPARγ 激动剂模拟该作用,进一步证实了这一点。此外,我们观察到 2-AG 诱导的 miR-30b 表达减少是通过 NF-kB 信号传导介导的。我们的研究提供了证据,表明星形胶质细胞中的 2-AG 信号通过调节 miR-30b 的表达在维持海马突触的功能完整性方面发挥重要作用。

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