首页> 外文OA文献 >An interaction between the human cholesteryl ester transfer protein (CETP) and apolipoprotein A-I genes in transgenic mice results in a profound CETP-mediated depression of high density lipoprotein cholesterol levels.
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An interaction between the human cholesteryl ester transfer protein (CETP) and apolipoprotein A-I genes in transgenic mice results in a profound CETP-mediated depression of high density lipoprotein cholesterol levels.

机译:转基因小鼠中人胆固醇酯转移蛋白(CETP)和载脂蛋白A-I基因之间的相互作用导致了CETP介导的高密度脂蛋白胆固醇水平的下降。

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摘要

We have previously described two transgenic mouse lines, one heterozygous for the human apo A-I gene and the other heterozygous for a human cholesteryl ester transfer protein (CETP) minigene driven by the mouse metallothionein-I gene promoter. In the current study, these two lines were crossed producing control, HuCETPTg, HuAITg, and HuAICETPTg mice to study the influence of CETP on HDL cholesterol levels, particle size distribution, and metabolism in animals with mouse and human-like HDL. In the HuCETPTg and HuAICETPTg animals, zinc induction approximately doubled plasma CETP activity, with no activity in plasma from the control and HuAITg animals. The only significant effect of CETP on lipoprotein subfraction cholesterol concentrations was for HDL-C. Compared to control animals, HuCETPTg animals had lower HDL-C, 20% before and 35% after Zn induction, and compared to HuAITg animals, HuAICETPTg animals had lower HDL-C, 35% before and 66% after Zn induction. Control and HuCETPTg HDL consist primarily of a single size population with a mean diameter of 10.00 +/- 0.10 nm and 9.71 +/- 0.05 nm, respectively. HuAITg HDL consists primarily of three distinct HDL size subpopulations with peak diameters of 10.35 +/- 0.08 nm, 8.80 +/- 0.06 nm, 7.40 +/- 0.10 nm, and HuAICETPTg HDL also consists primarily of three distinct HDL size subpopulations with peak diameters of 9.87 +/- 0.05 nm, 8.60 +/- 0.10 nm, 7.30 +/- 0.15 nm before, and 9.71 +/- 0.08 nm, 8.50 +/- 0.11 nm, 7.27 +/- 0.15 nm after zinc induction, respectively. Western blotting analysis of nondenaturing gradient gels of plasma with a monoclonal antibody to CETP indicated that in HuCETPTg and HuAICETPTg mice, 22 and 100%, respectively, of the CETP was HDL associated. Turnover studies with HDL doubly labeled with 125I apo A-I and 3H cholesteryl linoleate indicated that the CETP-induced fall in HDL-C was associated with increased HDL-cholesterol ester fractional catabolic rate in both the absence and presence of human apo A-I, suggesting CETP-mediated transfer of HDL-cholesterol ester to apo B-containing lipoproteins. In summary, these studies suggest that CETP has a much more profound effect on HDL cholesterol levels in transgenic animals expressing human apo A-I. This may be due to an enhanced interaction of CETP with human compared to mouse apo A-I or to the HDL particles they produce.
机译:我们先前已经描述了两种转基因小鼠品系,一种是人apo A-I基因的杂合子,另一种是由小鼠金属硫蛋白-I基因启动子驱动的人胆固醇酯转移蛋白(CETP)小基因的杂合子。在本研究中,这两条品系交叉杂交以产生对照,即HuCETPTg,HuAITg和HuAICETPTg小鼠,以研究CETP对HDL胆固醇水平,粒径分布和小鼠及类人HDL动物代谢的影响。在HuCETPTg和HuAICETPTg动物中,锌诱导使血浆CETP活性大约增加了一倍,而在对照和HuAITg动物的血浆中则没有活性。 CETP对脂蛋白亚组分胆固醇浓度的唯一显着影响是HDL-C。与对照动物相比,HuCETPTg动物具有较低的HDL-C,在诱导锌前为20%,后为35%,与HuAITg动物相比,HuAICETPTg动物具有较低的HDL-C,在诱导锌前为35%,在后锌为66%。对照和HuCETPTg HDL主要由单一大小的种群组成,其平均直径分别为10.00 +/- 0.10 nm和9.71 +/- 0.05 nm。 HuAITg HDL主要由三个不同的HDL大小亚群组成,峰值直径分别为10.35 +/- 0.08 nm,8.80 +/- 0.06 nm,7.40 +/- 0.10 nm,HuAICETPTg HDL也主要由三个不同的HDL大小亚群组成,峰值直径分别在锌诱导后的9.87 +/- 0.05 nm,8.60 +/- 0.10 nm,7.30 +/- 0.15 nm和9.71 +/- 0.08 nm,8.50 +/- 0.11 nm,7.27 +/- 0.15 nm之前分别测定。用抗CETP的单克隆抗体对血浆的非变性梯度凝胶进行Western印迹分析表明,在HuCETPTg和HuAICETPTg小鼠中,分别有22%和100%的CETP与HDL相关。用125I apo AI和3H胆甾醇亚油酸酯加倍标记的HDL的营业额研究表明,在缺少和存在人apo AI的情况下,CETP诱导的HDL-C下降与HDL-胆固醇酯分数分解代谢速率的增加有关。介导的HDL-胆固醇酯转移至含载脂蛋白B的脂蛋白。总之,这些研究表明CETP对表达人载脂蛋白A-I的转基因动物的HDL胆固醇水平具有更深远的影响。这可能是由于与小鼠载脂蛋白A-I或它们产生的HDL颗粒相比,CETP与人的相互作用增强了。

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