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环状 RNA SAMD4A 通过 miR-29c-3p 介导的 AMPK/mTOR 通路参与帕金森病中多巴胺能神经元的凋亡和自噬。

circSAMD4A participates in the apoptosis and autophagy of dopaminergic neurons via the miR‑29c‑3p‑mediated AMPK/mTOR pathway in Parkinson's disease.

机构信息

Department of Neurology, Ningbo No. 6 Hospital, Ningbo, Zhejiang 315040, P.R. China.

出版信息

Mol Med Rep. 2021 Jul;24(1). doi: 10.3892/mmr.2021.12179. Epub 2021 Jun 3.

Abstract

Parkinson's disease (PD) can lead to movement injury and cognitive dysfunction. Although advances have been made in attenuating PD, the effect of inhibiting the development of PD remains disappointing. Therefore, the present study aimed at investigating the etiology of Parkinson's disease and developing an alternative therapeutic strategy for patients with PD. A PD mouse model was established using an intraperitoneal injection of 1‑methyl‑4‑phenyl‑1,2,3,6‑tetrahydropyridine hydrochloride (MPTP‑HCl; 30 mg/kg/day for 5 days), and a PD cellular model was established by treating SH‑SY5Y cells with different concentrations of 1‑methyl‑4‑phenylpyridinium (MPP) for 24 h. The expression levels of circular RNA sterile α motif domain containing 4A (circSAMD4A) and microRNA (miR)‑29c‑3p in both midbrain tissues and SH‑SY5Y cells were detected via reverse transcription‑quantitative PCR. The interaction between circSAMD4A and miR‑29c‑3p was verified using a dual‑luciferase reporter experiment. Apoptosis‑, autophagy‑ and 5'AMP‑activated protein kinase (AMPK)/mTOR cascade‑associated proteins in midbrain tissues and SH‑SY5Y cells were detected using western blotting. Furthermore, TUNEL staining and flow cytometry were used to analyze cell apoptosis. It was found that circSAMD4A was upregulated, while miR‑29c‑3p was downregulated in both PD animal and cellular models. Moreover, circSAMD4A directly targeted and negatively regulated miR‑29c‑3p. Further studies identified that circSAMD4A knockdown inhibited MPTP‑ or MPP‑induced apoptosis and autophagy; however, these effects were abolished by an miR‑29c‑3p inhibitor. In addition, circSAMD4A knockdown repressed phosphorylated‑AMPK expression and increased mTOR expression in MPTP‑ or MPP‑induced PD models, the effects of which were reversed by a miR‑29c‑3p inhibitor. Collectively, these results suggested that circSAMD4A participated in the apoptosis and autophagy of dopaminergic neurons by modulating the AMPK/mTOR cascade via miR‑29c‑3p in PD.

摘要

帕金森病(PD)可导致运动损伤和认知功能障碍。尽管在减轻 PD 方面已经取得了进展,但抑制 PD 发展的效果仍然令人失望。因此,本研究旨在探讨帕金森病的病因,并为 PD 患者开发一种替代治疗策略。通过腹腔注射 1-甲基-4-苯基-1,2,3,6-四氢吡啶盐酸盐(MPTP-HCl;30mg/kg/天,连续 5 天)建立 PD 小鼠模型,并通过用不同浓度的 1-甲基-4-苯基吡啶(MPP)处理 SH-SY5Y 细胞 24h 建立 PD 细胞模型。通过逆转录-定量 PCR 检测中脑组织和 SH-SY5Y 细胞中环状 RNA 无菌α基序域包含 4A(circSAMD4A)和 microRNA(miR)-29c-3p 的表达水平。通过双荧光素酶报告实验验证 circSAMD4A 和 miR-29c-3p 之间的相互作用。通过 Western blot 检测中脑组织和 SH-SY5Y 细胞中凋亡、自噬和 5'AMP 激活蛋白激酶(AMPK)/mTOR 级联相关蛋白。此外,使用 TUNEL 染色和流式细胞术分析细胞凋亡。结果发现,PD 动物和细胞模型中 circSAMD4A 上调,而 miR-29c-3p 下调。此外,circSAMD4A 直接靶向并负调控 miR-29c-3p。进一步研究表明,circSAMD4A 敲低抑制 MPTP 或 MPP 诱导的凋亡和自噬;然而,这些作用被 miR-29c-3p 抑制剂所消除。此外,circSAMD4A 敲低抑制 MPTP 或 MPP 诱导的 PD 模型中磷酸化-AMPK 表达增加,mTOR 表达减少,miR-29c-3p 抑制剂可逆转这一作用。综上所述,这些结果表明,circSAMD4A 通过调节 AMPK/mTOR 级联通过 miR-29c-3p 参与 PD 中多巴胺能神经元的凋亡和自噬。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72d9/8170871/85347175d015/mmr-24-01-12179-g00.jpg

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