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Function of different proportions of apolipoprotein A-I cysteine mutants and apolipoprotein A-V on recombinant high-density lipoproteins in vitro

机译:不同比例载脂蛋白A-I半胱氨酸突变体和载脂蛋白A-V在体外重组高密度脂蛋白上的作用

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摘要

To explore the anti-atherosclerotic effects of recombinant high-density lipoproteins (rHDL) of apolipoprotein AI wild-type (apoA-Iwt), apolipoprotein AI Milano (apoA-IM), apolipoprotein AI (N74C) (apoA-I (N74C) )and apolipoprotein AV (apoA-V). We constructed rHDL liposomes (rHDLs), which included apoA-Iwt, apoA-IM, and apoA-I (N74C), followed by the synthesis of rHDLs, with the indicated ratios of apoA-Iwt, apoA-IM, apoA-I (N74C) and apoA-V. We investigated the anti-atherosclerotic effects by experiments including the DMPC clearance assay and experiments that assessed the in vitro antioxidation against low-density lipoprotein, the cellular uptake of oxidized low-density lipoprotein (oxLDL) and the in vitro intracellular lipid accumulation. Electron microscopy results revealed that as more apoA-V was present in rHDLs, the particle size of rHDLs was larger. The DMPC clearance assay subsequently showed that rHDL protein mixtures could promote DMPC turbidity clearance when more apoA-V was included in the reaction mixtures, with apoAV-rHDL showing the strongest turbidity clearance ability (P<0.05 vs AI-rHDL). In vitro antioxidation against low-density lipoprotein assays indicated that rHDLs containing apoA-V had increasing oxidation resistance against low-density lipoprotein (LDL) with higher apoA-V contents. Finally, cellular uptake of oxLDL and intracellular lipids suggested an apparent oxidation resistance to LDL oxidation in vitro and a reduced intracellular lipid accumulation in THP-1-derived macrophages, with AIM-rHDL demonstrating the greatest ability to decrease intracellular lipid accumulation. Different proportions of apolipoprotein A-I cysteine mutants and apolipoprotein A-V of rHDL changed the lipid binding capacity, particle size, and antioxidant capacity. These changes may show a beneficial effect of rHDL on atherosclerosis.
机译:探索载脂蛋白AI野生型(apoA-Iwt),载脂蛋白AI Milano(apoA-IM),载脂蛋白AI(N74C)(apoA-I(N74C))的重组高密度脂蛋白(rHDL)的抗动脉粥样硬化作用和载脂蛋白AV(apoA-V)。我们构建了rHDL脂质体(rHDLs),其中包括apoA-Iwt,apoA-IM和apoA-I(N74C),然后合成rHDLs,其中所示比例为apoA-Iwt,apoA-IM,apoA-I( N74C)和apoA-V。我们通过包括DMPC清除试验和评估针对低密度脂蛋白的体外抗氧化,氧化低密度脂蛋白(oxLDL)的细胞摄取以及体外细胞内脂质蓄积的实验在内的实验研究了抗动脉粥样硬化作用。电子显微镜结果显示,随着rHDLs中存在更多的apoA-V,rHDLs的粒径变大。 DMPC清除测定随后显示,当反应混合物中包含更多apoA-V时,rHDL蛋白混合物可促进DMPC浊度清除,而apoAV-rHDL显示出最强的浊度清除能力(P <0.05 vs AI-rHDL)。针对低密度脂蛋白的体外抗氧化试验表明,含有apoA-V的rHDL对具有更高apoA-V含量的低密度脂蛋白(LDL)的抗氧化性不断增强。最后,oxLDL和细胞内脂质的细胞摄取表明体外对LDL氧化具有明显的抗氧化性,并且THP-1衍生的巨噬细胞中的细胞内脂质蓄积减少,而AIM-rHDL表现出最大的减少细胞内脂质蓄积的能力。 rHDL的载脂蛋白A-I半胱氨酸突变体和载脂蛋白A-V的不同比例改变了脂质结合能力,颗粒大小和抗氧化能力。这些变化可能显示出rHDL对动脉粥样硬化的有益作用。

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