Yang Longyan, Wang Yan, Xu Yongsong, Li Kun, Yin Ruili, Zhang Lijie, Wang Di, Wei Lingling, Lang Jianan, Cheng Yanan, Wang Lu, Ke Jing, Zhao Dong
Center for Endocrine Metabolism and Immune Diseases, Beijing Luhe Hospital Capital Medical University, Beijing, China.
Beijing Key Laboratory of Diabetes Research and Care, Beijing, China.
J Transl Med. 2024 Mar 10;22(1):263. doi: 10.1186/s12967-024-05032-x.
Angiopoietin-like protein 3 (ANGPTL3) is secreted by hepatocytes and inhibits lipoprotein lipase and endothelial lipase activity. Previous studies reported the correlation between plasma ANGPTL3 levels and high-density lipoprotein (HDL). Recently ANGPTL3 was found to preferentially bind to HDL in healthy human circulation. Here, we examined whether ANGPTL3, as a component of HDL, modulates HDL function and affects HDL other components in human and mice with non-diabetes or type 2 diabetes mellitus.
HDL was isolated from the plasma of female non-diabetic subjects and type-2 diabetic mellitus (T2DM) patients. Immunoprecipitation, western blot, and ELISA assays were used to examine ANGPTL3 levels in HDL. Db/m and db/db mice, AAV virus mediated ANGPTL3 overexpression and knockdown models and ANGPTL3 knockout mice were used. The cholesterol efflux capacity induced by HDL was analyzed in macrophages preloaded with fluorescent cholesterol. The anti-inflammation capacity of HDL was assessed using flow cytometry to measure VCAM-1 and ICAM-1 expression levels in TNF-α-stimulated endothelial cells pretreated with HDL.
ANGPTL3 was found to bind to HDL and be a component of HDL in both non-diabetic subjects and T2DM patients. Flag-ANGPTL3 was found in the HDL of transgenic mice overexpressing Flag-ANGPTL3. ANGPLT3 of HDL was positively associated with cholesterol efflux in female non-diabetic controls (r = 0.4102, p = 0.0117) but not in female T2DM patients (r = - 0.1725, p = 0.3224). Lower ANGPTL3 levels of HDL were found in diabetic (db/db) mice compared to control (db/m) mice and were associated with reduced cholesterol efflux and inhibition of VCAM-1 and ICAM-1 expression in endothelial cells (p < 0.05 for all). Following AAV-mediated ANGPTL3 cDNA transfer in db/db mice, ANGPTL3 levels were found to be increased in HDL, and corresponded to increased cholesterol efflux and decreased ICAM-1 expression. In contrast, knockdown of ANGPTL3 levels in HDL by AAV-mediated shRNA transfer led to a reduction in HDL function (p < 0.05 for both). Plasma total cholesterol, total triglycerides, HDL-c, protein components of HDL and the cholesterol efflux function of HDL were lower in ANGPTL3-/- mice than ANGPTL3+/+ mice, suggesting that ANGPTL3 in HDL may regulate HDL function by disrupting the balance of protein components in HDL.
ANGPTL3 was identified as a component of HDL in humans and mice. ANGPTL3 of HDL regulated cholesterol efflux and the anti-inflammatory functions of HDL in T2DM mice. Both the protein components of HDL and cholesterol efflux capacity of HDL were decreased in ANGPTL3-/- mice. Our findings suggest that ANGPTL3 in HDL may regulate HDL function by disrupting the balance of protein components in HDL. Our study contributes to a more comprehensive understanding of the role of ANGPTL3 in lipid metabolism.
血管生成素样蛋白3(ANGPTL3)由肝细胞分泌,可抑制脂蛋白脂肪酶和内皮脂肪酶活性。先前的研究报道了血浆ANGPTL3水平与高密度脂蛋白(HDL)之间的相关性。最近发现,在健康人体循环中ANGPTL3优先与HDL结合。在此,我们研究了作为HDL成分的ANGPTL3是否会调节HDL功能,并影响非糖尿病或2型糖尿病患者及小鼠体内HDL的其他成分。
从非糖尿病女性受试者和2型糖尿病(T2DM)患者的血浆中分离HDL。采用免疫沉淀、蛋白质印迹和酶联免疫吸附测定法检测HDL中的ANGPTL3水平。使用db/m和db/db小鼠、腺相关病毒(AAV)介导的ANGPTL3过表达和敲低模型以及ANGPTL3基因敲除小鼠。在预先加载荧光胆固醇的巨噬细胞中分析HDL诱导的胆固醇流出能力。使用流式细胞术评估HDL的抗炎能力,以测量用HDL预处理的肿瘤坏死因子-α刺激的内皮细胞中血管细胞黏附分子-1(VCAM-1)和细胞间黏附分子-1(ICAM-1)的表达水平。
在非糖尿病受试者和T2DM患者中均发现ANGPTL3与HDL结合且是HDL的一个成分。在过表达Flag-ANGPTL3的转基因小鼠的HDL中发现了Flag-ANGPTL3。HDL中的ANGPLT3与非糖尿病女性对照组的胆固醇流出呈正相关(r = 0.4102,p = 0.0117),但在女性T2DM患者中无相关性(r = -0.1725,p = 0.3224)。与对照(db/m)小鼠相比,糖尿病(db/db)小鼠HDL中的ANGPTL3水平较低,且与胆固醇流出减少以及内皮细胞中VCAM-1和ICAM-1表达的抑制相关(所有p均<0.05)。在db/db小鼠中进行AAV介导的ANGPTL3 cDNA转移后,发现HDL中的ANGPTL3水平升高,且与胆固醇流出增加和ICAM-1表达降低相对应。相反,通过AAV介导的短发夹RNA转移降低HDL中的ANGPTL3水平会导致HDL功能降低(两者p均<0.05)。ANGPTL3基因敲除小鼠的血浆总胆固醇、总甘油三酯、HDL-胆固醇、HDL的蛋白质成分以及HDL的胆固醇流出功能均低于ANGPTL3基因敲除小鼠,这表明HDL中的ANGPTL3可能通过破坏HDL中蛋白质成分的平衡来调节HDL功能。
在人和小鼠中均确定ANGPTL3是HDL的一个成分。HDL中的ANGPTL3调节T2DM小鼠中HDL的胆固醇流出和抗炎功能。ANGPTL3基因敲除小鼠中HDL的蛋白质成分和HDL的胆固醇流出能力均降低。我们的研究结果表明,HDL中的ANGPTL3可能通过破坏HDL中蛋白质成分的平衡来调节HDL功能。我们的研究有助于更全面地了解ANGPTL3在脂质代谢中的作用。