实用医学杂志 ›› 2022, Vol. 38 ›› Issue (10): 1213-1219.doi: 10.3969/j.issn.1006⁃5725.2022.10.008

• 基础研究 • 上一篇    下一篇

lncRNA H19/Sirt3介导自噬在脑出血后损伤中的作用机制

袁敏 王素洁 李茜 张志月    

  1. 唐山市工人医院(河北医科大学附属唐山临床医学院)(河北唐山 063000)

  • 出版日期:2022-05-25 发布日期:2022-05-25
  • 基金资助:
    河北省卫生健康委 2019 年度医学科研立项项目(编号:20190052)

The mechanism of action of lncRNA H19/Sirt3 mediated autophagy in injury after intracerebralhemor⁃ rhage

YUAN Min,WANG Sujie,LI Qian,ZHANG Zhiyue.   

  1. Tangshan Workers Hospital(Tangshan Clinical Medi⁃ cal College Affiliated to Hebei Medical University),Tangshan 063000,China
  • Online:2022-05-25 Published:2022-05-25

摘要:

目的 探讨 lncRNA H19(H19)/Sirt3 介导自噬在脑出血(ICH)后损伤中的作用机制方法 通过胶原酶注射建立ICH小鼠模型。将经氧合血红蛋白(OxyHb)处理的SH⁃SY5Y细胞用作体外ICH模型。 含有 sh⁃H19 的慢病毒载体用于抑制 ICH 小鼠和培养的 SH⁃SY5Y 细胞中的 H19 表达。在 ICH 模型建立后 48 h,对小鼠神经功能缺损进行 mNSS 评分,并对病灶体积进行分析,同时分别采用 RT⁃qPCR 法、Tunel 色和免疫荧光分析损伤组织中 H19 表达、神经元细胞凋亡和 LC3 表达。分别采用 MTT 法测量细胞活力、 Tunel 染色检测细胞凋亡以及 Western blot 分析自噬相关蛋白和 Sirt3/AMPK/mTOR 信号通路蛋白表达情况。 结果 H19 表达在 ICH 后和 OxyHb 处理细胞中以时间依赖性方式增强(P < 0.05)。H19 敲低降低了 ICH 型建立后第 2 天病灶体积和 mNSS 评分(P < 0.01),减少神经元细胞凋亡(P < 0.01),并增强了 ICH 损伤期 间自噬的调节作用。H19 敲低增强了暴露于 OxyHb SH⁃SY5Y 细胞活力,减少了细胞凋亡,促进细胞自 噬。H19 主要通过调节 Sirt3 表达和激活 AMPK⁃mTOR 信号通路促进自噬。结论 H19 在体内外 ICH 模型 中以时间依赖性方式增强。H19敲低可能通过Sirt3/AMPK/mTOR 信号通路诱导自噬减轻ICH 损伤。

关键词:

lncRNA H19, Sirt3, AMPK/mTOR 信号通路, 脑出血, 自噬, 小鼠

Abstract:

Objective To explore the mechanism of action of lncRNA H19(H19)/Sirt3 mediated autoph⁃ agy in injury after intracerebral hemorrhage(ICH). Methods Amouse model of ICH was established by injections with collagenase. SH⁃SY5Y cells treated with oxyhemoglobin(OxyHb)were used as an in vitro ICH model. Alenti⁃ viral vector containing sh⁃H19 was used to inhibit H19 expressions in ICH mice and cultured SH⁃SY5Y cells. 48 hours after establishment of the ICH model,the mouse neurologic deficits were analyzed by mNSS score and lesion volume. RT⁃qPCR,Tunel staining and immunofluorescence were used to analyze the expression of H19,neuronal apoptosis and LC3 express in the injured tissues respectively. Cell viability was measured by MTT assay,apoptosis was detected by Tunel staining,and expressions of autophagy ⁃ related proteins and Sirt3/AMPK/mTOR signaling pathway were analyzed by Western blot. Results The expression of H19 was increased after ICH and in OxyHb⁃ treated cells in a time⁃dependent manner(P < 0.05). H19 knockdown reduced the lesion volume and mNSS score on the second day after establishment of the ICH model(P < 0.01),decreased neuronal apoptosis(P < 0.01), and enhanced regulation of autophagy during ICH injury. H19 knockdown enhanced the viability of SH⁃SY5Y cells exposed to OxyHb,reduced apoptosis,and accelerated autophagy. H19 accelerated autophagy mainly through regu⁃ lating Sirt3 expression and activating AMPK⁃mTOR pathway. Conclusions H19 is enhanced in a time⁃dependent manner in ICH models in vivo and in vitro. H19 knockdown relieves ICH damage via autophagy induced by Sirt3/ AMPK/mTOR signaling pathway.

Key words:

lncRNA H19, Sirt3, AMPK/mTOR signaling pathway, intracerebral hemorrhage, au? tophagy, mouse