[通过调控BACE1泛素化,探索lncRNA-BC200调控神经元损伤修复的机制]。

细胞与分子免疫学杂志 Pub Date : 2025-02-01
Lijun Liu, Jie Du, Huan Liu, Yuan Wang, Jing Zhang
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The mRNA expression levels of BC200 and BACE1 in cells were measured by real-time quantitative reverse transcription polymerase chain reaction. The expressions of c-caspase-3, B-cell lymphoma 2 (Bcl2), Bcl2 associated X protein(BAX) and BACE1 were detected by western blot, and the apoptotic cells were detected by terminal deoxynucleotidyl transferase dUTP nick end labeling (TUNEL) test. Results Compared with the control group, the activity of HT22 cells in OGD/R group decreased significantly, and the percentage of apoptotic cells increased significantly. Compared with OGD/R+si-NC group, the activity of HT22 cells in OGD/R+si-BC200 group increased significantly, and the percentage of apoptotic cells decreased significantly. Compared with the control group, the expression of BACE1 protein in HT22 cells in OGD/R group was significantly enhanced. Compared with OGD/R+si-NC group, the expression of BACE1 protein in HT22 cells in OGD/R+si-BC200 group decreased significantly. It was observed that after OGD/R treatment, the ubiquitination level of BACE1 decreased significantly and the expression of BACE1 protein increased significantly. After transfection with si-BC200, the ubiquitination level of BACE1 protein increased significantly, while the expression of BACE1 protein decreased significantly. Compared with OGD/R+si-BC200+NC group, the percentage of apoptotic cells, the expression of c-caspase-3 and Bax protein in HT22 cells in OGD/R+si-BC200+BACE1 group increased significantly, and the expression of Bcl2 protein decreased significantly. Compared with the control group, the number of cerebral infarction areas and TUNEL positive cells in MCAO group increased significantly, and the survival number of neurons decreased significantly. 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引用次数: 0

摘要

目的探讨lncRNA-BC200 (BC200)靶向β位点APP切割酶1 (BACE1)泛素化调控神经细胞损伤修复的机制。方法将小鼠海马神经元细胞系HT22分为4组:对照组、氧糖剥夺/再氧化(OGD/R)组、OGD/R+si-NC组和OGD/R+si-BC200组。为了进一步探讨BC200与BACE1的关系,我们将HT22细胞分为四组:OGD/R组、OGD/R+si-BC200组、OGD/R+si-BC200+NC组和OGD/R+si-BC200+ BACE1组。将20只雄性C57BL/6J小鼠随机分为4组:对照组、大脑中动脉闭塞(MCAO)组、MCAO+si-BC200组和MCAO+si-BC200+BACE1组。实时定量逆转录聚合酶链反应检测细胞中BC200和BACE1 mRNA表达水平。western blot检测c-caspase-3、b细胞淋巴瘤2 (Bcl2)、Bcl2相关X蛋白(BAX)和BACE1的表达,末端脱氧核苷酸转移酶dUTP缺口末端标记法(TUNEL)检测凋亡细胞的表达。结果与对照组比较,OGD/R组HT22细胞活性明显降低,凋亡细胞比例明显升高。与OGD/R+si-NC组相比,OGD/R+si-BC200组HT22细胞活性显著升高,凋亡细胞比例显著降低。与对照组相比,OGD/R组HT22细胞中BACE1蛋白的表达明显增强。与OGD/R+si-NC组相比,OGD/R+si-BC200组HT22细胞中BACE1蛋白表达明显降低。观察到OGD/R处理后,BACE1泛素化水平显著降低,BACE1蛋白表达显著升高。转染si-BC200后,BACE1蛋白泛素化水平显著升高,而BACE1蛋白表达显著降低。与OGD/R+si-BC200+NC组相比,OGD/R+si-BC200+BACE1组HT22细胞的凋亡细胞百分比、c-caspase-3和Bax蛋白的表达均显著升高,Bcl2蛋白的表达均显著降低。与对照组比较,MCAO组脑梗死面积和TUNEL阳性细胞数量明显增加,神经元存活数量明显减少。与MCAO组相比,MCAO+si-BC200组脑梗死面积和TUNEL阳性细胞数量明显减少,神经元存活数量明显增加,而BACE1的加入逆转了si-BC200转染的改善。结论BC200与BACE1联合抑制BACE1泛素化,参与介导OGD/R诱导的BACE1表达增强。特异性阻断BC200/BACE1轴可能是保护脑缺血/再灌注诱导的神经元凋亡的潜在治疗靶点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Exploring the mechanism of lncRNA-BC200 in regulating neuronal injury repair based on controlling BACE1 ubiquitination].

Objective To explore the mechanism of lncRNA-BC200 (BC200) targeting the ubiquitination of Beta-site APP cleaving enzyme 1 (BACE1) and regulating the repair of nerve cell injury. Methods Mouse hippocampal neuron cell line HT22 was divided into four groups: control group, oxygen-glucose deprivation/reoxygenation(OGD/R) group, OGD/R+si-NC group and OGD/R+si-BC200 group. In order to further explore the relationship between BC200 and BACE1, HT22 cells were divided into four groups: OGD/R group, OGD/R+si-BC200 group, OGD/R+si-BC200+NC group and OGD/R+si-BC200+ BACE1 group. Twenty male C57BL/6J mice were randomly assigned to the following four groups: control group, middle cerebral artery occlusion (MCAO) group, MCAO+si-BC200 group and MCAO+si-BC200+BACE1 group. The mRNA expression levels of BC200 and BACE1 in cells were measured by real-time quantitative reverse transcription polymerase chain reaction. The expressions of c-caspase-3, B-cell lymphoma 2 (Bcl2), Bcl2 associated X protein(BAX) and BACE1 were detected by western blot, and the apoptotic cells were detected by terminal deoxynucleotidyl transferase dUTP nick end labeling (TUNEL) test. Results Compared with the control group, the activity of HT22 cells in OGD/R group decreased significantly, and the percentage of apoptotic cells increased significantly. Compared with OGD/R+si-NC group, the activity of HT22 cells in OGD/R+si-BC200 group increased significantly, and the percentage of apoptotic cells decreased significantly. Compared with the control group, the expression of BACE1 protein in HT22 cells in OGD/R group was significantly enhanced. Compared with OGD/R+si-NC group, the expression of BACE1 protein in HT22 cells in OGD/R+si-BC200 group decreased significantly. It was observed that after OGD/R treatment, the ubiquitination level of BACE1 decreased significantly and the expression of BACE1 protein increased significantly. After transfection with si-BC200, the ubiquitination level of BACE1 protein increased significantly, while the expression of BACE1 protein decreased significantly. Compared with OGD/R+si-BC200+NC group, the percentage of apoptotic cells, the expression of c-caspase-3 and Bax protein in HT22 cells in OGD/R+si-BC200+BACE1 group increased significantly, and the expression of Bcl2 protein decreased significantly. Compared with the control group, the number of cerebral infarction areas and TUNEL positive cells in MCAO group increased significantly, and the survival number of neurons decreased significantly. Compared with the MCAO group, the number of cerebral infarction areas and TUNEL positive cells in MCAO+si-BC200 group decreased significantly, and the survival number of neurons increased significantly, while the addition of BACE1 reversed the improvement of si-BC200 transfection. Conclusion The combination of BC200 and BACE1 inhibit the ubiquitination of BACE1, and participate in mediating the expression enhancement of BACE1 induced by OGD/R. Specific blocking of BC200/BACE1 axis may be a potential therapeutic target to protect neurons from apoptosis induced by cerebral ischemia/reperfusion.

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