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TRESK通过ATP5i介导的氧化应激和DNA损伤调节Gm11874以诱导脊髓神经元凋亡。

TRESK Regulates Gm11874 to Induce Apoptosis of Spinal Cord Neurons via ATP5i Mediated Oxidative Stress and DNA Damage.

作者信息

Liu Pei, Cheng Ye, Xu Huiling, Huang Haicheng, Tang Simin, Song Fuhu, Zhou Jun

机构信息

Department of Anesthesiology, The Third Affiliated Hospital of Southern Medical University, Guangzhou, 510000, Guangdong Province, China.

出版信息

Neurochem Res. 2021 Aug;46(8):1970-1980. doi: 10.1007/s11064-021-03318-w. Epub 2021 May 10.

Abstract

Reportedly, TWIK-related spinal cord K (TRESK) deficiency in spinal cord neurons positively correlates with the mechanism underlying neuropathic pain (NP). However, the precise effects of TRESK on neurons of the spinal cord remain elusive. In the present study, we investigated the impact of TRESK silencing on spinal cord neurons to further elucidate the downstream mechanisms of TRESK. Herein, neurons of the dorsal spinal cord were cultured as a cell model for investigations. Apoptosis, oxidative stress, and DNA damage-related proteins were evaluated. Additionally, flow cytometry, microarray profiling, real-time polymerase chain reaction (PCR), western blotting, fluorescence in situ hybridization (FISH), immunofluorescence, and enzyme-linked immunosorbent assay (ELISA) were performed. In cultured neurons, the downregulation of TRESK mRNA expression induced apoptosis of dorsal spinal cord neurons. Using real-time PCR and western blotting, the upregulation of LncRNA Gm11874 (Gm11874) and ATP5i, screened from the gene chip, was confirmed. On silencing TRESK, expression levels of γ-H2AX, poly [ADP-ribose] polymerase 1 (PARP-1), FoxO1, FoxO3, MitoSOX, malondialdehyde (MDA), and 8-hydroxy-2' -deoxyguanosine (8-OHdG), which are known indices of oxidative stress and DNA damage, were significantly elevated. Moreover, ATP induced oxidative stress, DNA damage, and apoptosis were reduced by ATP5i siRNA. Finally, Gm11874 and ATP5i were co-expressed in spinal cord neurons in a FISH experiment, and the expression of ATP5i was positively regulated by Gm11874. These results implied that ATP5i induced oxidative stress and DNA damage, resulting in neuronal apoptosis, and Gm11874 was confirmed to act upstream of ATP5i. Our study revealed that TRESK silencing upregulated Gm11874 to induce apoptosis of spinal cord neurons, which resulted in ATP5i promoting oxidative stress and DNA damage. These findings could highlight the TRESK-mediated NP mechanism.

摘要

据报道,脊髓神经元中与TWIK相关的脊髓钾通道(TRESK)缺乏与神经性疼痛(NP)的潜在机制呈正相关。然而,TRESK对脊髓神经元的确切作用仍不清楚。在本研究中,我们研究了TRESK沉默对脊髓神经元的影响,以进一步阐明TRESK的下游机制。在此,将脊髓背角神经元培养作为研究的细胞模型。评估了凋亡、氧化应激和DNA损伤相关蛋白。此外,还进行了流式细胞术、基因芯片分析、实时聚合酶链反应(PCR)、蛋白质印迹、荧光原位杂交(FISH)、免疫荧光和酶联免疫吸附测定(ELISA)。在培养的神经元中,TRESK mRNA表达下调诱导脊髓背角神经元凋亡。通过实时PCR和蛋白质印迹,证实了从基因芯片中筛选出的LncRNA Gm11874(Gm11874)和ATP5i的上调。沉默TRESK后,氧化应激和DNA损伤的已知指标γ-H2AX、聚[ADP-核糖]聚合酶1(PARP-1)、FoxO1、FoxO3、MitoSOX、丙二醛(MDA)和8-羟基-2'-脱氧鸟苷(8-OHdG)的表达水平显著升高。此外,ATP5i siRNA可减轻ATP诱导的氧化应激、DNA损伤和凋亡。最后,在FISH实验中,Gm11874和ATP5i在脊髓神经元中共表达,且ATP5i的表达受Gm11874正向调控。这些结果表明,ATP5i诱导氧化应激和DNA损伤,导致神经元凋亡,且证实Gm11874在ATP5i上游起作用。我们的研究表明,TRESK沉默上调Gm11874以诱导脊髓神经元凋亡,进而导致ATP5i促进氧化应激和DNA损伤。这些发现可能突出了TRESK介导的NP机制。

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