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β-arrestin2 通过抑制慢性轻度应激抑郁模型中小鼠星形胶质细胞的焦亡对氟西汀的抗抑郁作用是不可或缺的。

β-arrestin2 is indispensable for the antidepressant effects of fluoxetine via inhibiting astrocytic pyroptosis in chronic mild stress mouse model for depression.

机构信息

The First Affiliated Hospital of Bengbu Medical University, Changhuai Road, Bengbu, 233000, Anhui, China; School of Pharmacy, Bengbu Medical University, Donghhai Avenue, Bengbu, 233030, Anhui, China.

The First Affiliated Hospital of Bengbu Medical University, Changhuai Road, Bengbu, 233000, Anhui, China.

出版信息

Eur J Pharmacol. 2024 Aug 5;976:176693. doi: 10.1016/j.ejphar.2024.176693. Epub 2024 Jun 2.

Abstract

β-arrestin2 is a versatile protein for signaling transduction in brain physiology and pathology. Herein, we investigated the involvement of β-arrestin2 in pharmacological effects of fluoxetine for depression. A chronic mild stress (CMS) model was established using wild-type (WT) and β-arrestin2 mice. Behavioral results demonstrated that CMS mice showed increased immobility time in the tail suspension test and forced swimming test, elevated concentrations of pro-inflammatory factors in peripheral blood, increased expression of pyroptosis-related proteins, and increased co-labeling of glial fibrillary acidic protein and Caspase1 p10 in the hippocampus compared to the CON group. Treatment with fluoxetine (FLX) ameliorated these conditions. However, compared with the β-arrestin2 CMS group, these results of the β-arrestin2 CMS + FLX group showed no significant changes. These results suggested that the above effects of FLX could be eliminated by knocking out β-arrestin2. Mass spectrometry implying that FLX promoted the binding of β-arrestin2 to the NLRP2 inflammasome of depressed mice. Subsequently, the results of the cellular experiments suggested that the 5HT receptor antagonist may attenuate L-kynurenine + ATP-induced cell pyroptosis by attenuating NLRP2 binding to β-arrestin2. We further found that the lack of β-arrestin2 eliminated the anti-pyroptosis effect of fluoxetine. In conclusion, β-arrestin2 is an essential protein for fluoxetine to alleviate pyroptosis in the hippocampal astrocytes of CMS mice. Mechanistically, we found that the 5-HTR-β-arrestin2-NLRP2 axis is vital for maintaining the antidepressant effects of fluoxetine.

摘要

β-arrestin2 是一种多功能蛋白,可参与脑生理学和病理学中的信号转导。在此,我们研究了β-arrestin2 在氟西汀治疗抑郁症中的作用。使用野生型(WT)和β-arrestin2 小鼠建立慢性轻度应激(CMS)模型。行为学结果表明,CMS 小鼠在悬尾试验和强迫游泳试验中表现出不动时间增加,外周血促炎因子浓度升高,焦亡相关蛋白表达增加,海马胶质纤维酸性蛋白和 Caspase1 p10 的共标记增加与 CON 组相比。氟西汀(FLX)治疗改善了这些情况。然而,与β-arrestin2 CMS 组相比,β-arrestin2 CMS + FLX 组的这些结果没有明显变化。这些结果表明,敲除β-arrestin2 可以消除 FLX 的上述作用。质谱分析表明,FLX 促进了抑郁小鼠中β-arrestin2 与 NLRP2 炎性体的结合。随后,细胞实验结果表明,5-HT 受体拮抗剂可能通过减弱 NLRP2 与β-arrestin2 的结合来减轻 L-犬尿氨酸+ATP 诱导的细胞焦亡。我们进一步发现,缺乏β-arrestin2 消除了氟西汀的抗细胞焦亡作用。总之,β-arrestin2 是氟西汀减轻 CMS 小鼠海马星形胶质细胞细胞焦亡所必需的蛋白。从机制上讲,我们发现 5-HTR-β-arrestin2-NLRP2 轴对于维持氟西汀的抗抑郁作用至关重要。

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