抑制 USP30 可通过调节 Parkin 对 MFN2 的泛素化来促进有丝分裂,从而减轻 SAH 后的早期脑损伤。

IF 3.8 2区 医学 Q1 CLINICAL NEUROLOGY
Translational Stroke Research Pub Date : 2025-04-01 Epub Date: 2023-12-26 DOI:10.1007/s12975-023-01228-3
Yang Liu, Chenbei Yao, Bin Sheng, Simin Zhi, Xiangxin Chen, Pengfei Ding, Jiatong Zhang, Zhennan Tao, Wei Li, Zong Zhuang, Jiannan Mao, Zheng Peng, Huiying Yan, Wei Jin
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引用次数: 0

摘要

蛛网膜下腔出血(SAH)是一种致残率和死亡率都很高的中风类型。神经元细胞线粒体大量受损导致细胞凋亡,细胞外 ATP 过高导致炎症反应,从而导致不良后果。USP30 是一种去泛素化酶,可抑制有丝分裂,导致 SAH 后无法及时清除受损线粒体;然而,USP30 抑制有丝分裂的途径尚不清楚。本研究评估了抑制 USP30 通过促进神经元有丝分裂来减轻 SAH 引起的 EBI 的神经保护作用和可能的分子基础。我们使用了血红蛋白暴露的体外模型和血管内穿孔的体内模型。体内和体外 SAH 后发现 USP30 的表达增加,用 MF094 治疗 SAH 小鼠后,USP30 的抑制表达使神经损伤和炎症反应明显改善,并带来良好的预后,这表明 USP30 抑制具有神经保护作用。在培养的神经元中,抑制 USP30 可促进 E3 泛素连接酶(Parkin)对线粒体融合蛋白 2(MFN2)进行泛素化修饰,将受损的线粒体从健康的线粒体网络中分离出来,促使线粒体吞噬,使细胞内受损的线粒体尽早清除,减少细胞凋亡的发生。高细胞外 ATP 环境得到改善,逆转了小胶质细胞向促炎表型的转化,减少了炎症损伤。USP30 抑制对结构和功能正常的线粒体没有自噬促进作用,也不抑制细胞内 ATP 的正常产生。研究结果表明,USP30抑制剂可在SAH后通过促进早期有丝分裂来清除受损线粒体,从而起到神经保护作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inhibition of USP30 Promotes Mitophagy by Regulating Ubiquitination of MFN2 by Parkin to Attenuate Early Brain Injury After SAH.

Subarachnoid hemorrhage (SAH) is a type of stroke with a high disability and mortality rate. Apoptosis caused by massive damage to mitochondria in neuron cells and inflammatory responses caused by high extracellular ATP lead to poor outcomes. USP30 is a deubiquitinating enzyme that inhibits mitophagy, resulting in a failure to remove damaged mitochondria in a timely manner after SAH; nevertheless, the pathway through which USP30 inhibits mitophagy is unknown. This study evaluated the neuroprotective role and possible molecular basis by which inhibiting USP30 to attenuate SAH-induced EBI by promoting neuronal mitophagy. We used an in vitro model of hemoglobin exposure and an in vivo model of intravascular perforation. Increased expression of USP30 was found after SAH in vivo and in vitro, and USP30 inhibition expression in SAH mice treated with MF094 resulted in significant improvement of neurological injury and inflammatory response and mediated good outcomes, suggesting a neuroprotective effect of USP30 inhibition. In cultured neurons, inhibition of USP30 promoted ubiquitination modification of mitochondrial fusion protein 2 (MFN2) by E3 ubiquitin ligase (Parkin), separating damaged mitochondria from the healthy mitochondrial network and prompting mitophagy, causing early clearance of damaged intracellular mitochondria, and reducing the onset of apoptosis. The high extracellular ATP environment was meliorated, reversing the conversion of microglia to a pro-inflammatory phenotype and reducing inflammatory injury. USP30 inhibition had no autophagy-promoting effect on structurally and functionally sound mitochondria and did not inhibit normal intracellular ATP production. The findings suggest that USP30 inhibition has a neuroprotective effect after SAH by promoting early mitophagy after SAH to clear damaged mitochondria.

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来源期刊
Translational Stroke Research
Translational Stroke Research CLINICAL NEUROLOGY-NEUROSCIENCES
CiteScore
13.80
自引率
4.30%
发文量
130
审稿时长
6-12 weeks
期刊介绍: Translational Stroke Research covers basic, translational, and clinical studies. The Journal emphasizes novel approaches to help both to understand clinical phenomenon through basic science tools, and to translate basic science discoveries into the development of new strategies for the prevention, assessment, treatment, and enhancement of central nervous system repair after stroke and other forms of neurotrauma. Translational Stroke Research focuses on translational research and is relevant to both basic scientists and physicians, including but not restricted to neuroscientists, vascular biologists, neurologists, neuroimagers, and neurosurgeons.
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