首页> 美国卫生研究院文献>Journal of Lipid Research >ApoF knockdown increases cholesteryl ester transfer to LDL and impairs cholesterol clearance in fat-fed hamsters
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ApoF knockdown increases cholesteryl ester transfer to LDL and impairs cholesterol clearance in fat-fed hamsters

机译:APOF敲低增加胆固醇酯转移到LDL并损害脂肪喂食仓鼠中的胆固醇清除

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摘要

Cholesteryl ester transfer protein (CETP) regulates intravascular lipoprotein metabolism. In vitro studies indicate that ApoF alters CETP function by inhibiting its activity with LDL. To explore in vivo the complexities driving ApoF’s effects on CETP, we developed a siRNA-based hamster model of ApoF knockdown. In both male and female hamsters on chow- or fat-fed diets, we measured lipoprotein levels and composition, determined CETP-mediated transfer of cholesteryl esters (CEs) between lipoproteins, and quantified reverse cholesterol transport (RCT). We found that apoF knockdown in chow-fed hamsters had no effect on lipoprotein levels or composition, but these ApoF-deficient lipoproteins supported 50–100% higher LDL CETP activity in vitro. ApoF knockdown in fat-fed male hamsters created a phenotype in which endogenous CETP-mediated CE transfer from HDL to LDL increased up to 2-fold, LDL cholesterol increased 40%, HDL declined 25%, LDL and HDL lipid compositions were altered, and hepatic LDLR gene expression was decreased. Diet-induced hypercholesterolemia obscured this phenotype on occasion. In fat-fed female hamsters, ApoF knockdown caused similar but smaller changes in plasma CETP activity and LDL cholesterol. Notably, ApoF knockdown impaired HDL RCT in fat-fed hamsters but increased sterol excretion in chow-fed animals. These in vivo data validate in vitro findings that ApoF regulates lipid transfer to LDL. The consequences of ApoF knockdown on lipoproteins and sterol excretion depend on the underlying lipid status. By minimizing the transfer of HDL-derived CE to LDL, ApoF helps control LDL cholesterol levels when LDL clearance mechanisms are limiting.
机译:胆固醇酯转移蛋白(CETP)调节血管内脂蛋白代谢。体外研究表明,APOF通过抑制其与LDL的活性改变CETP功能。为了在体内探索驾驶APOF对CETP影响的复杂性,我们开发了一个基于siRNA的仓鼠模型的APOF敲低。在雌性和雌性仓鼠的雌性和雌性仓鼠中,我们测得脂蛋白水平和组成,确定脂蛋白之间的CETP介导的胆囊酯(CES)的转移,并定量反向胆固醇转运(RCT)。我们发现在喂食仓鼠中的APOF敲低对脂蛋白水平或组合物没有影响,但这些APOF缺陷型脂蛋白在体外支持50-100%的LDL CETP活性。脂肪喂雄仓鼠的APOF敲低产生了一种表型,其中内源性CETP介导的从HDL至LDL的CE转移增加到2倍,LDL胆固醇增加40%,HDL下降25%,改变了LDL和HDL脂质组合物,并且肝脏LDLR基因表达减少。饮食诱导的高胆固醇血症偶尔掩盖了这种表型。在胖胖的女性仓鼠中,APOF敲低造成类似但血浆CETP活性和LDL胆固醇的更小的变化。值得注意的是,APOF敲低肥胖的仓鼠中的HDL RCT受损,但在食用动物中增加了甾醇排泄。这些在体内数据中验证了APOF调节脂质转移到LDL的体外结果。 APOF敲低对脂蛋白和甾醇排泄的后果取决于潜在的脂质状态。通过最小化HDL衍生的CE至LDL的转移,当LDL间隙机制限制时,APOF有助于控制LDL胆固醇水平。

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