lncRNA MEG3基因表观遗传学对巨噬细胞脂质代谢的干预机制研究

Intervention mechanism of epigenetics of lncRNA MEG3 gene on macrophage lipid metabolism

  • 摘要:
    目的 基于巨噬细胞模型观察长链非编码RNA母系表达基因3(lncRNA MEG3)与微小RNA(miR)-642a-5p对甘油三酯(TG)生成限速酶脂蛋白脂酶(LPL)的影响,并从基因表观遗传学水平探讨降低TG抗动脉粥样硬化(AS)的细化作用机制。
    方法 采用50 mg/L氧化修饰的低密度脂蛋白(ox-LDL)制备人单核白血病细胞(THP-1)模型,给予不同转染干预。采用实时定量聚合酶链反应(qRCR)法检测lncRNA MEG3、miR-642a-5p、血管生成素样蛋白4(ANGPTL4)、LPL的基因表达; 采用蛋白免疫印迹(WB)法检测ANGPTL4、LPL的蛋白表达; 采用油红染色观察带有红色脂滴颗粒细胞数目(代表细胞脂质沉积)。
    结果 ① 在ox-LDL暴露的THP-1细胞模型中, lncRNA MEG3高表达, miR-642a-5p低表达, ANGPTL4高表达, LPL低表达,带有红色脂滴颗粒细胞数目高表达,差异均有统计学意义(P < 0.01)。② lncRNA MEG3与miR-642a-5p基因相对表达水平呈负相关(r=-0.764 9, P=0.045), miR-642a-5p与ANGPTL4基因相对表达水平呈负相关(r=-0.976 5, P=0.001 2), ANGPTL4与LPL蛋白相对表达水平呈负相关(r=-0.929 3, P=0.002 5), ANGPTL4与带有红色脂滴颗粒细胞数目呈正相关(r=0.897 1, P=0.025)。③上调miR-642a-5p, ANGPTL4蛋白及基因相对表达水平降低, LPL蛋白及基因相对表达水平增加,差异有统计学意义(P < 0.01); 下调miR-642a-5p, ANGPTL4蛋白及基因相对表达水平增加, LPL蛋白及基因相对表达水平降低,差异有统计学意义(P < 0.01)。④敲除lncRNA MEG3, ANGPTL4蛋白及基因相对表达水平降低, miR-642a-5p基因、LPL蛋白及基因相对表达水平增加,差异有统计学意义(P < 0.01)。⑤敲除lncRNA MEG3且上调miR-642a-5p, miR-642a-5p基因、LPL基因及其蛋白相对表达水平增加, ANGPTL4基因及其蛋白相对表达水平降低,差异有统计学意义(P < 0.01); 敲除lncRNA MEG3且下调miR-642a-5p, miR-642a-5p基因、LPL基因及其蛋白相对表达水平降低, ANGPTL4基因及其蛋白相对表达水平增加,差异有统计学意义(P < 0.01)。
    结论 ANGPTL4抑制LPL成为促进脂质沉积新的炎症因子, miR-642a-5p通过靶向抑制ANGPTL4基因表达,减少巨噬细胞脂质沉积,而lncRNA MEG3可能作为竞争性内源RNA, 通过“海绵吸附效应”抑制miR-642a-5p使下游ANGPTL4基因转录表达增加,抑制LPL促进TG生成。

     

    Abstract:
    Objective To observe the effects of long non-coding RNA maternally expressed gene 3 (lncRNA MEG3) and microRNA (miR)-642a-5p on lipoprotein lipase (LPL) as a rate-limiting enzyme for triglyceride (TG) synthesis in a macrophage model, and to explore the refined mechanisms underlying TG reduction and anti-atherosclerosis (AS) at the epigenetic level.
    Methods A human monocytic leukemia cell (THP-1) model was established by 50 mg/L oxidized low-density lipoprotein (ox-LDL) and subjected to various transfection interventions. Gene expression levels of lncRNA MEG3, miR-642a-5p, angiopoietin-like protein 4 (ANGPTL4), and LPL were detected by real-time quantitative polymerase chain reaction (qPCR). Protein expression levels of ANGPTL4 and LPL were assessed by Western blotting (WB). Oil red O staining wasused to quantify the number of cells containing red lipid droplets (representing cellular lipid deposition).
    Results ① In the ox-LDL-exposed THP-1 cell model, lncRNA MEG3 and ANGPTL4 were highly expressed, while miR-642a-5p and LPL were under-expressed. The number of cells with red lipid droplets was significantly elevated (P < 0.01). ② A negative correlation was observed between the relative expression levels of lncRNA MEG3 and miR-642a-5p (r=-0.764 9, P=0.045), miR-642a-5p and ANGPTL4 (r=-0.976 5, P=0.001 2), and ANGPTL4 and LPL protein expression (r=-0.929 3, P=0.002 5). A positive correlation was found between ANGPTL4 and the number of cells with red lipid droplets (r=0.897 1, P=0.025). ③ Upregulation of miR-642a-5p significantly reduced the relative expression levels of ANGPTL4 protein and gene while increasing those of LPL protein and gene (P < 0.01). Conversely, downregulation of miR-642a-5p increased ANGPTL4 protein and gene expression, while LPL protein and gene expression deereased (P < 0.01). ④ Knockout of lncRNA MEG3 decreased ANGPTL4 protein and gene expression while miR-642a-5p gene expression and LPL protein and gene expression increased (P < 0.01). ⑤ Combined knockout of lncRNA MEG3 and upregulation of miR-642a-5p increased the relative expression levels of miR-642a-5p gene, LPL gene, and protein while those of ANGPTL4 gene and protein deereased (P < 0.01).Conversely, combined knockout of lncRNA MEG3 and downregulation of miR-642a-5p decreased miR-642a-5p gene, LPL gene, and protein expression while ANGPTL4 gene and protein expression increased (P < 0.01).
    Conclusion ANGPTL4 inhibits LPL, acting as a novel pro-inflammatory factor promoting lipid deposition. MiR-642a-5p reduces macrophage lipid deposition by targeting and inhibiting ANGPTL4 gene expression. LncRNA MEG3 may function as a competing endogenous RNA, suppressing miR-642a-5p via a "sponge effect", thereby increasing downstream ANGPTL4 gene transcription and inhibiting LPL to promote TG synthesis.

     

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