首页> 美国卫生研究院文献>Journal of Lipid Research >ApoA-IV promotes the biogenesis of apoA-IV-containing HDL particles with the participation of ABCA1 and LCAT
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ApoA-IV promotes the biogenesis of apoA-IV-containing HDL particles with the participation of ABCA1 and LCAT

机译:ApoA-IV在ABCA1和LCAT的参与下促进含apoA-IV的HDL颗粒的生物发生

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摘要

The objective of this study was to establish the role of apoA-IV, ABCA1, and LCAT in the biogenesis of apoA-IV-containing HDL (HDL-A-IV) using different mouse models. Adenovirus-mediated gene transfer of apoA-IV in apoA-I−/− mice did not change plasma lipid levels. ApoA-IV floated in the HDL2/HDL3 region, promoted the formation of spherical HDL particles as determined by electron microscopy, and generated mostly α- and a few pre-β-like HDL subpopulations. Gene transfer of apoA-IV in apoA-I−/− × apoE−/− mice increased plasma cholesterol and triglyceride levels, and 80% of the protein was distributed in the VLDL/IDL/LDL region. This treatment likewise generated α- and pre-β-like HDL subpopulations. Spherical and α-migrating HDL particles were not detectable following gene transfer of apoA-IV in ABCA1−/− or LCAT−/− mice. Coexpression of apoA-IV and LCAT in apoA-I−/− mice restored the formation of HDL-A-IV. Lipid-free apoA-IV and reconstituted HDL-A-IV promoted ABCA1 and scavenger receptor BI (SR-BI)-mediated cholesterol efflux, respectively, as efficiently as apoA-I and apoE. Our findings are consistent with a novel function of apoA-IV in the biogenesis of discrete HDL-A-IV particles with the participation of ABCA1 and LCAT, and may explain previously reported anti-inflammatory and atheroprotective properties of apoA-IV.
机译:这项研究的目的是建立apoA-IV,ABCA1和LCAT在使用不同小鼠模型的含apoA-IV的HDL(HDL-A-IV)的生物合成中的作用。腺病毒介导的apoA-I -/-小鼠中apoA-IV的基因转移不会改变血浆脂质水平。通过电子显微镜确定,ApoA-IV漂浮在HDL2 / HDL3区域中,促进了球形HDL颗粒的形成,并产生了大部分的α-和少量的类似pre-β的HDL亚群。 apoA-I -/-×apoE -/-小鼠中apoA-IV的基因转移增加血浆胆固醇和甘油三酸酯水平,并且80%的蛋白质分布在小鼠体内VLDL / IDL / LDL区域。该处理同样产生了α-和β-前HDL亚群。在apoA-IV基因转移后,ABCA1 -/-或LCAT -/-小鼠中无法检测到球形和α迁移的HDL颗粒。 apoA-I -/-小鼠中apoA-IV和LCAT的共表达恢复了HDL-A-IV的形成。不含脂质的apoA-IV和重组的HDL-A-IV分别可促进abca1和清道夫受体BI(SR-BI)介导的胆固醇外流,效果与apoA-i和apoE一样有效。我们的发现与ABCA1和LCAT参与的离散HDL-A-IV颗粒的生物合成中apoA-IV的新功能相符,并且可以解释先前报道的apoA-IV的抗炎和抗动脉粥样硬化特性。

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