Conde-Knape Karin, Okada Kenta, Ramakrishnan Rajasekhar, Shachter Neil S
Department of Medicine, Columbia University, New York, NY 10032, USA.
J Lipid Res. 2004 Dec;45(12):2235-44. doi: 10.1194/jlr.M400185-JLR200. Epub 2004 Sep 1.
The adaptive value of apolipoprotein B-48 (apoB-48), the truncated form of apoB produced by the intestine, in lipid metabolism remains unclear. We crossed human apoC-III transgenic mice with mice expressing either apoB-48 only (apoB48/48) or apoB-100 only (apoB100/100). Cholesterol levels were higher in apoB48/48 mice than in apoB100/100 mice but triglyceride levels were similar. Lipid levels were increased by the apoC-III transgene. However, triglyceride levels were significantly higher in apoB100/100C-III than in apoB48/48C-III mice (895 +/- 395 mg/dl vs. 690 +/- 252 mg/dl; P <0.01), whereas cholesterol levels were higher in the apoB48/48C-III mice than in apoB100/100C-III (144 +/- 35 mg/dl vs. 94 +/- 30 mg/dl; P <0.00001). Triglyceride clearance from VLDL was impaired to a greater extent in apoB100/100C-III vs. apoB100/100 mice than in apoB48/48C-III vs. apoB48/48 mice. Triglyceride secretion rates were no different in apoC-III transgenic mice than in their nontransgenic littermates. ApoB-48 triglyceride-rich lipoproteins were more resistant to the triglyceride-increasing effects of apoC-III but appeared more sensitive to the remnant clearance inhibition. Our findings support a coordinated role for apoB-48 in facilitating the delivery of dietary triglycerides to the periphery. Consistent with such a mechanism, glucose levels were significantly higher in apoB48/48 mice vs. apoB100/100 mice, perhaps on the basis of metabolic competition.
肠道产生的载脂蛋白B-48(apoB-48),即apoB的截短形式,在脂质代谢中的适应性价值仍不清楚。我们将人载脂蛋白C-III转基因小鼠与仅表达apoB-48(apoB48/48)或仅表达apoB-100(apoB100/100)的小鼠进行杂交。apoB48/48小鼠的胆固醇水平高于apoB100/100小鼠,但甘油三酯水平相似。载脂蛋白C-III转基因使脂质水平升高。然而,apoB100/100C-III小鼠的甘油三酯水平显著高于apoB48/48C-III小鼠(895±395mg/dl对690±252mg/dl;P<0.01),而apoB48/48C-III小鼠的胆固醇水平高于apoB100/100C-III小鼠(144±35mg/dl对94±30mg/dl;P<0.00001)。与apoB100/100小鼠相比,apoB100/100C-III小鼠中极低密度脂蛋白(VLDL)甘油三酯的清除受损程度更大,而与apoB48/48小鼠相比,apoB48/48C-III小鼠中这种受损程度较小。载脂蛋白C-III转基因小鼠的甘油三酯分泌率与其非转基因同窝小鼠没有差异。富含apoB-48的甘油三酯脂蛋白对载脂蛋白C-III的甘油三酯升高作用更具抗性,但似乎对残余物清除抑制更敏感。我们的研究结果支持apoB-48在促进膳食甘油三酯向周围组织输送方面发挥协调作用。与这种机制一致的是,apoB48/48小鼠的血糖水平显著高于apoB100/100小鼠,这可能是基于代谢竞争。