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鉴定一种可稳定脂蛋白脂肪酶的小分子化合物,该化合物可降低体内甘油三酯。

Identification of a small molecule that stabilizes lipoprotein lipase in vitro and lowers triglycerides in vivo.

机构信息

Umeå University, Medical Biosciences, Umeå, Sweden.

Umeå University, Department of Chemistry, Umeå, Sweden.

出版信息

Biochem Biophys Res Commun. 2014 Jul 25;450(2):1063-9. doi: 10.1016/j.bbrc.2014.06.114. Epub 2014 Jun 28.

Abstract

Patients at increased cardiovascular risk commonly display high levels of plasma triglycerides (TGs), elevated LDL cholesterol, small dense LDL particles and low levels of HDL-cholesterol. Many remain at high risk even after successful statin therapy, presumably because TG levels remain high. Lipoprotein lipase (LPL) maintains TG homeostasis in blood by hydrolysis of TG-rich lipoproteins. Efficient clearance of TGs is accompanied by increased levels of HDL-cholesterol and decreased levels of small dense LDL. Given the central role of LPL in lipid metabolism we sought to find small molecules that could increase LPL activity and serve as starting points for drug development efforts against cardiovascular disease. Using a small molecule screening approach we have identified small molecules that can protect LPL from inactivation by the controller protein angiopoietin-like protein 4 during incubations in vitro. One of the selected compounds, 50F10, was directly shown to preserve the active homodimer structure of LPL, as demonstrated by heparin-Sepharose chromatography. On injection to hypertriglyceridemic apolipoprotein A-V deficient mice the compound ameliorated the postprandial response after an olive oil gavage. This is a potential lead compound for the development of drugs that could reduce the residual risk associated with elevated plasma TGs in dyslipidemia.

摘要

患有心血管疾病风险增加的患者通常表现出血浆甘油三酯(TGs)水平升高、LDL 胆固醇升高、小而密 LDL 颗粒和 HDL-胆固醇水平降低。许多患者即使在成功接受他汀类药物治疗后仍处于高风险状态,推测是因为 TG 水平仍然很高。脂蛋白脂肪酶(LPL)通过水解富含 TG 的脂蛋白来维持血液中的 TG 稳态。TG 的有效清除伴随着 HDL-胆固醇水平的升高和小而密 LDL 水平的降低。鉴于 LPL 在脂代谢中的核心作用,我们试图寻找可以增加 LPL 活性的小分子,作为开发针对心血管疾病的药物的起点。我们使用小分子筛选方法,已经确定了一些小分子,它们可以在体外孵育过程中保护 LPL 免受控制器蛋白血管生成素样蛋白 4 的失活。所选化合物之一 50F10 被直接证明可以通过肝素琼脂糖凝胶色谱法保留 LPL 的活性同源二聚体结构。将该化合物注射到载脂蛋白 A-V 缺乏的高脂血症小鼠中,可改善橄榄油灌胃后的餐后反应。这是一种潜在的先导化合物,可用于开发可降低血脂异常中升高的血浆 TGs 相关残余风险的药物。

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