在全身麻醉期间,microRNA-214的破坏可防止脑损伤,并通过促进Mfn2与Pkm2的相互作用来维持线粒体融合。

IF 5.3 2区 医学 Q1 Biochemistry, Genetics and Molecular Biology
Journal of Cellular and Molecular Medicine Pub Date : 2020-12-01 Epub Date: 2020-11-04 DOI:10.1111/jcmm.15222
Tiejun Liu, Bin Wang, Gai Li, Xiaoliu Dong, Guannan Yu, Qingzeng Qian, Likun Duan, Hongxia Li, Zhao Jia, Jing Bai
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引用次数: 7

摘要

手术全身麻醉的持续时间与严重脑损伤和神经功能缺损有关。然而,全身麻醉后脑损伤的具体机制仍有待阐明。在此,我们探讨了microRNA-214 (miR-214)在全身麻醉后脑损伤发生中的作用及其潜在机制。从暴露于2%七氟醚的大鼠中分离海马组织和神经元。TUNEL染色反映海马神经元凋亡。用JC-1和MitoTracker染色的培养海马神经元,在荧光显微镜下观察线粒体膜电位和线粒体融合的变化。评估线粒体功能。通过共免疫沉淀、免疫荧光、双荧光素酶报告基因和RNA免疫沉淀试验证实丝裂酶2 (Mfn2)与miR-214或丙酮酸激酶M2 (Pkm2)结合。暴露于2%七氟醚后,在大鼠海马组织中发现miR-214表达上调,Mfn2和Pkm2之间的相互作用受损。暴露于2%七氟醚的大鼠也经历了神经元损伤、线粒体缺陷和脑源性神经营养因子(Bdnf)信号传导缺陷。miR-214通过破坏Mfn2与Pkm2的结合而靶向Mfn2。使用miR-214特异性抑制剂抑制其表达可改善线粒体膜电位,增强线粒体融合,维持线粒体功能,恢复Mfn2和Pkm2之间的相互作用,激活培养海马神经元中的Bdnf信号传导。腺病毒感染miR-214抑制剂可减少2%七氟醚暴露大鼠海马神经元凋亡并维持线粒体功能。综上所述,该研究表明miR-214的抑制对全身麻醉后的脑损伤具有脑保护作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Disruption of microRNA-214 during general anaesthesia prevents brain injury and maintains mitochondrial fusion by promoting Mfn2 interaction with Pkm2.

Disruption of microRNA-214 during general anaesthesia prevents brain injury and maintains mitochondrial fusion by promoting Mfn2 interaction with Pkm2.

Disruption of microRNA-214 during general anaesthesia prevents brain injury and maintains mitochondrial fusion by promoting Mfn2 interaction with Pkm2.

Disruption of microRNA-214 during general anaesthesia prevents brain injury and maintains mitochondrial fusion by promoting Mfn2 interaction with Pkm2.

Duration of surgical general anaesthesia is associated with severe brain injury and neurological deficits. The specific mechanisms underlying post-general anaesthesia brain injury, however, still remain to be elucidated. Herein, we explore the role of microRNA-214 (miR-214) in the occurrence of brain injury after general anaesthesia and its underlying mechanism. Hippocampal tissues and neurons were isolated from rats exposed to 2% sevoflurane. TUNEL stains reflect hippocampal neuron apoptosis. Cultured hippocampal neurons stained with JC-1 and MitoTracker dyes were imaged by fluorescence microscope to visualize changes of mitochondrial membrane potential and mitochondrial fusion. Mitochondrial function was evaluated. Mitofusin 2 (Mfn2) binding to miR-214 or pyruvate kinase M2 (Pkm2) was confirmed by co-immunoprecipitation, immunofluorescence, dual luciferase reporter gene and RNA immunoprecipitation assays. After exposure to 2% sevoflurane, up-regulated miR-214 expression and impaired interaction between Mfn2 and Pkm2 were found in rat hippocampal tissues. Rats exposed to 2% sevoflurane also experienced neuronal injury, mitochondrial defects and deficits in the brain-derived neurotrophic factor (Bdnf) signalling. miR-214 was shown to target Mfn2 by impairing its binding with Pkm2. Inhibiting miR-214 expression using its specific inhibitor improved mitochondrial membrane potential, enhanced mitochondrial fusion, maintained mitochondrial function, restored interaction between Mfn2 and Pkm2, and activated the Bdnf signalling in cultured hippocampal neurons. Adenovirus infection of miR-214 inhibitor reduced neuron apoptosis and maintained mitochondrial function in the hippocampus of rats exposed to 2% sevoflurane. Taken together, the study demonstrates inhibition of miR-214 is cerebral protective against brain injury following general anaesthesia.

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来源期刊
CiteScore
10.00
自引率
1.90%
发文量
496
审稿时长
28 weeks
期刊介绍: Bridging physiology and cellular medicine, and molecular biology and molecular therapeutics, Journal of Cellular and Molecular Medicine publishes basic research that furthers our understanding of the cellular and molecular mechanisms of disease and translational studies that convert this knowledge into therapeutic approaches.
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