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甘油醛-3-磷酸脱氢酶(GAPDH)在蛛网膜下腔出血后自噬激活中的作用

Role of glyceraldehyde-3-phosphate dehydrogenase (GAPDH) in autophagy activation following subarachnoid hemorrhage.

作者信息

Huo Junfeng, Dong Wei, Xu Jiake, Ma Lu, You Chao

机构信息

Department of Neurosurgery, West China Hospital, Sichuan University, Chengdu, Sichuan, PR China.

Department of Neurosurgery, West China Hospital, Sichuan University, Chengdu, Sichuan, PR China.

出版信息

Exp Neurol. 2024 Jan;371:114577. doi: 10.1016/j.expneurol.2023.114577. Epub 2023 Oct 18.

Abstract

BACKGROUND

Early brain injury (EBI) refers to a severe brain injury that occurs within hours to days after subarachnoid hemorrhage (SAH). Neuronal damage in EBI is considered a key factor leading to poor prognosis. Currently, our understanding of the mechanisms of neuronal damage, such as neuronal autophagy, is still incomplete. Glyceraldehyde-3-phosphate dehydrogenase (GAPDH) is a key enzyme in metabolism and plays an important role in autophagy. Based on this, this study will further explore the regulation of autophagy by GAPDH after SAH, which may provide a new treatment strategy for improving the prognosis of SAH patients.

METHODS

The rat SAH model was established by endovascular puncturing, and the trend of autophagy in hippocampal neurons at different time points was discussed. Additionally, an in vitro SAH model was created using the oxygenated hemoglobin and hippocampal neuronal HT22 cell line. Through siRNA and overexpression adenovirus techniques, we further investigated the relationship between the key enzyme GAPDH and autophagy in the in vitro SAH model.

RESULTS

We observed significant neuronal damage in the hippocampus 24 h after SAH, and the proteomics showed significant enrichment of autophagy-related pathways at this time point. Further studies showed that the expression of LC3 and Beclin1 peaked at 24 h, and the nuclear translocation of GAPDH occurred simultaneously with SAH-induced neuronal autophagy. Our in vitro SAH model confirmed the role of GAPDH in regulating the level of autophagy in HT22 cells. Knockdown of GAPDH significantly reduced the level of autophagy, while overexpression of GAPDH increased the level of autophagy.

CONCLUSION

This study shows the trend of autophagy in hippocampal neurons after SAH, and reveals the regulatory role of GAPDH in SAH-induced autophagy. However, further studies are needed to reveal the exact mechanism of GAPDH in the nuclear translocation regulation of autophagy and validate in animal models.

摘要

背景

早期脑损伤(EBI)是指蛛网膜下腔出血(SAH)后数小时至数天内发生的严重脑损伤。EBI中的神经元损伤被认为是导致预后不良的关键因素。目前,我们对神经元损伤机制的理解,如神经元自噬,仍不完整。甘油醛-3-磷酸脱氢酶(GAPDH)是代谢中的关键酶,在自噬中起重要作用。基于此,本研究将进一步探讨SAH后GAPDH对自噬的调节作用,这可能为改善SAH患者的预后提供新的治疗策略。

方法

通过血管内穿刺建立大鼠SAH模型,探讨不同时间点海马神经元自噬的变化趋势。此外,利用氧合血红蛋白和海马神经元HT22细胞系建立体外SAH模型。通过小干扰RNA(siRNA)和过表达腺病毒技术,进一步研究体外SAH模型中关键酶GAPDH与自噬之间的关系。

结果

我们观察到SAH后24小时海马区存在明显的神经元损伤,蛋白质组学显示此时自噬相关通路显著富集。进一步研究表明,微管相关蛋白轻链3(LC3)和Beclin1的表达在24小时达到峰值,GAPDH的核转位与SAH诱导的神经元自噬同时发生。我们的体外SAH模型证实了GAPDH在调节HT22细胞自噬水平中的作用。敲低GAPDH可显著降低自噬水平,而GAPDH过表达则增加自噬水平。

结论

本研究显示了SAH后海马神经元自噬的变化趋势,揭示了GAPDH在SAH诱导的自噬中的调节作用。然而,需要进一步研究以揭示GAPDH在自噬核转位调节中的具体机制,并在动物模型中进行验证。

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