Shachter N S, Ebara T, Ramakrishnan R, Steiner G, Breslow J L, Ginsberg H N, Smith J D
Department of Medicine, College of Physicians and Surgeons of Columbia University, New York, New York 10032, USA.
J Clin Invest. 1996 Aug 1;98(3):846-55. doi: 10.1172/JCI118857.
We have generated transgenic mice over-expressing human apolipoprotein CI (apo CI) using the native gene joined to the downstream 154-bp liver-specific enhancer that we defined for apo E. Human apo CI (HuCI)-transgenic mice showed elevation of plasma triglycerides (mg/dl) compared to controls in both the fasted (211 +/- 81 vs 123 +/- 52, P = 0.0001) and fed (265 +/- 105 vs 146 +/- 68, P < 0.0001) states. Unlike the human apo CII (HuCII)- and apo CIII (HuCIII)-transgenic mouse models of hypertriglyceridemia, plasma cholesterol was disproportionately elevated (95 +/- 23 vs 73 +/- 23, P = 0.002, fasted and 90 +/- 24 vs 61 +/- 14, P < 0.0001, fed). Lipoprotein fractionation showed increased VLDL and IDL + LDL with an increased cholesterol/triglyceride ratio (0.114 vs 0.065, P = 0.02, in VLDL). The VLDL apo E/apo B ratio was decreased 3.4-fold (P = 0.05) and apo CII and apo CIII decreased in proportion to apo E. Triglyceride and apo B production rates were normal, but clearance rates of VLDL triglycerides and postlipolysis lipoprotein "remnants" were significantly slowed. Plasma apo B was significantly elevated. Unlike HuCII- and HuCIII-transgenic mice, VLDL from HuCI transgenic mice bound heparin-Sepharose, a model for cell-surface glycosaminoglycans, normally. In summary, apo CI overexpression is associated with decreased particulate uptake of apo B-containing lipoproteins, leading to increased levels of several potentially atherogenic species, including cholesterol-enriched VLDL, IDL, and LDL.
我们利用与我们为载脂蛋白E定义的下游154碱基对肝脏特异性增强子相连的天然基因,培育出了过度表达人载脂蛋白CI(apo CI)的转基因小鼠。与对照组相比,人apo CI(HuCI)转基因小鼠在禁食(211±81对123±52,P = 0.0001)和进食(265±105对146±68,P < 0.0001)状态下血浆甘油三酯(mg/dl)均升高。与高甘油三酯血症的人apo CII(HuCII)和apo CIII(HuCIII)转基因小鼠模型不同,血浆胆固醇升高不成比例(禁食时95±23对73±23,P = 0.002;进食时90±24对61±14,P < 0.0001)。脂蛋白分级显示极低密度脂蛋白(VLDL)和中间密度脂蛋白 + 低密度脂蛋白(IDL + LDL)增加,胆固醇/甘油三酯比值升高(VLDL中为0.114对0.065,P = 0.02)。VLDL载脂蛋白E/载脂蛋白B比值降低了3.4倍(P = 0.05),载脂蛋白CII和载脂蛋白CIII与载脂蛋白E成比例降低。甘油三酯和载脂蛋白B的生成速率正常,但VLDL甘油三酯和脂解后脂蛋白“残粒”的清除速率显著减慢。血浆载脂蛋白B显著升高。与HuCII和HuCIII转基因小鼠不同,HuCI转基因小鼠的VLDL能正常结合肝素 - 琼脂糖,这是一种细胞表面糖胺聚糖的模型。总之,apo CI的过度表达与含apo B脂蛋白的颗粒摄取减少有关,导致几种潜在致动脉粥样硬化物质水平升高,包括富含胆固醇的VLDL、IDL和LDL。