CDP-二酰基甘油合酶1表达下调诱导自噬体与溶酶体融合障碍促进小鼠海马β-淀粉样蛋白沉积
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国家自然科学基金(82271523),中央引导地方科技发展资金项目(YDZJSX20231A053),细胞生理学教育部重点实验室开放课题(KLMEC/SXMU-201904),山西省回国留学人员科研资助项目(2024-077).


CDP-diacylglycerol synthase 1 down-regulation induced dysfusion of autophagosome and lysosome promotes β-amyloid protein deposition in hippocampus of mice
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Supported by National Natural Science Foundation of China (82271523), Project of Local Sci-Tech Development Guided by Central Government (YDZJSX20231A053), Open Project of Key Laboratory of Cell Physiology of Ministry of Education (KLMEC/SXMU-201904), and Scientific Program for Returned Overseas Scholars of Shanxi Province (2024-077).

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    摘要:

    目的 探究CDP-二酰基甘油合酶1(CDS1)对小鼠海马神经细胞自噬和淀粉样蛋白沉积的影响及机制。方法 使用刚果红和免疫组织化学染色观察淀粉样前体蛋白(APP)/早老蛋白1(PS1)双转基因小鼠海马组织淀粉样物质的沉积情况;慢病毒介导HT22细胞内APP过表达,刚果红染色观察细胞内淀粉样物质沉积情况;蛋白质印迹法检测APP/PS1双转基因小鼠海马组织和APP过表达HT22细胞的微管相关蛋白1轻链3(LC3)-Ⅱ、P62蛋白表达情况;通过APP/PS1双转基因小鼠海马蛋白质组学结果,筛选出差异表达蛋白CDS1;蛋白质印迹法检测APP/PS1双转基因小鼠海马组织和APP过表达HT22细胞中的CDS1蛋白表达情况;慢病毒介导HT22细胞APP过表达后,再过表达CDS1,采用蛋白质印迹法检测LC3-Ⅱ、P62蛋白表达情况。结果 APP/PS1双转基因小鼠海马组织及APP过表达HT22细胞中均有β-淀粉样蛋白的沉积。在APP/PS1双转基因小鼠海马组织和APP过表达HT22细胞中LC3-Ⅱ、P62蛋白均升高。从APP/PS1双转基因小鼠蛋白质组学结果中的京都基因与基因组百科全书通路分析筛选到其中一条差异代谢通路——甘油磷脂代谢通路,从该通路中获取到差异表达蛋白CDS1。与野生型C57BL/6小鼠相比,APP/PS1双转基因小鼠海马组织中CDS1 蛋白表达量下降(0.46±0.07 vs 1.00±0.25,P<0.01);与感染空载病毒载体的HT22细胞相比,慢病毒过表达APP的HT22细胞中CDS1蛋白表达量下降(0.68±0.18 vs 1.00±0.13,P<0.01)。在APP过表达的HT22细胞过表达CDS1后,神经细胞的自噬流明显恢复(LC3-Ⅱ:1.00±0.15 vs 0.21±0.05,P<0.01;P62:1.00±0.16 vs 0.67±0.10,P<0.01),并且Aβ沉积明显减少。结论 CDS1表达下调诱导自噬体与溶酶体融合障碍,促进阿尔茨海默病小鼠海马淀粉样物质沉积。

    Abstract:

    Objective To explore the effects of CDP-diacylglycerol synthase 1 (CDS1) on autophagy and amyloid deposition in hippocampal neurons of mice and the related mechanism. Methods Congo red and immunohistochemical staining were used to observe the amyloid deposition in hippocampus of amyloid precursor protein (APP)/presenilin 1 (PS1) double-transgenic mice. Lentivirus-mediated overexpression of APP was induced in HT22 cells, and Congo red staining was used to observe the amyloid deposition in HT22 cells. The protein expression levels of microtubule-associated protein 1 light chain 3 (LC3)-Ⅱ and P62 in the hippocampus of APP/PS1 double-transgenic mice and APP-overexpressed HT22 cells were detected by Western blotting. The differential protein CDS1 was screened based on the hippocampal proteomics results of APP/PS1 double-transgenic mice. The expression of CDS1 protein in hippocampal tissue of APP/PS1 transgenic mice and APP-overexpressed HT22 cells was detected by Western blotting. After lentivirus-mediated APP overexpression in HT22 cells, CDS1 was overexpressed, and the protein expression levels of LC3-Ⅱ and P62 were detected by Western blotting. Results β-amyloid protein (Aβ) was deposited in the hippocampus of APP/PS1 mice and in HT22 cells overexpressing APP. The levels of LC3-Ⅱ and P62 protein in the hippocampus of APP/PS1 double-transgenic mice and APP-overexpressed HT22 cells were significantly increased. A differential metabolic pathway, glycerophospholipid metabolic pathway, was screened by Kyoto Encyclopedia of Genes and Genomes pathway analysis in the proteomic results of APP/PS1 double-transgenic mice, and the differential protein CDS1 was obtained. Compared with wild-type C57BL/6 mice, APP/PS1 double-transgenic mice exhibited a significantly decrease in CDS1 protein expression in the hippocampus (0.46±0.07 vs 1.00±0.25, P<0.01). Similarly, lentivirus-mediated overexpression of APP in HT22 cells resulted in decreased CDS1 protein levels compared to cells infected with empty viral vector controls (0.68±0.18 vs 1.00±0.13, P<0.01). The autophagy flow of nerve cells was significantly restored after the CDS1 overexpression in APP-overexpressed HT22 cells (LC3-Ⅱ: 1.00±0.15 vs 0.21±0.05, P<0.01; P62: 1.00±0.16 vs 0.67±0.10, P<0.01), and Aβ deposition was significantly decreased. Conclusion Downregulation of CDS1 expression can induce dysfusion of autophagosome and lysosome, promoting amyloid deposition in hippocampus of mice with Alzheimer’s disease.

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  • 收稿日期:2023-12-04
  • 最后修改日期:2024-05-07
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  • 在线发布日期: 2025-06-21
  • 出版日期: 2025-06-20
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