Köster Anja, Chao Y Bernice, Mosior Marian, Ford Amy, Gonzalez-DeWhitt Patricia A, Hale John E, Li Deshan, Qiu Yubin, Fraser Christopher C, Yang Derek D, Heuer Josef G, Jaskunas S Richard, Eacho Patrick
Lilly Research Laboratories, Eli Lilly & Company, Indianapolis, Indiana 46225, USA.
Endocrinology. 2005 Nov;146(11):4943-50. doi: 10.1210/en.2005-0476. Epub 2005 Aug 4.
Lipoprotein lipase (LPL) is a key regulator of triglyceride clearance. Its coordinated regulation during feeding and fasting is critical for maintaining lipid homeostasis and energy supply. Angiopoietin-like (Angptl)3 and Angptl4 are secreted proteins that have been demonstrated to regulate triglyceride metabolism by inhibiting LPL. We have taken a targeted genetic approach to generate Angptl4- and Angptl3-deficient mice as well as transgenic mice overexpressing human Angptl4 in the liver. The Angptl4 transgenic mice displayed elevated plasma triglycerides and reduced postheparin plasma (PHP) LPL activity. A purified recombinant Angptl4 protein inhibited mouse LPL and recombinant human LPL activity in vitro. In contrast to the transgenic mice, Angptl4-deficient mice displayed hypotriglyceridemia and increased PHP LPL activity, with greater effects in the fasted compared with the fed state. Angptl3-deficient mice also displayed hypotriglyceridemia with elevated PHP LPL activity, but these mice showed a greater effect in the fed state. Mice deficient in both Angptl proteins showed an additive effect on plasma triglycerides and did not survive past 2 months of age. Our results show that Angptl3 and Angptl4 function to regulate circulating triglyceride levels during different nutritional states and therefore play a role in lipid metabolism during feeding/fasting through differential inhibition of LPL.
脂蛋白脂肪酶(LPL)是甘油三酯清除的关键调节因子。其在进食和禁食期间的协调调节对于维持脂质稳态和能量供应至关重要。血管生成素样蛋白(Angptl)3和Angptl4是分泌蛋白,已被证明可通过抑制LPL来调节甘油三酯代谢。我们采用靶向基因方法生成了Angptl4和Angptl3缺陷型小鼠以及在肝脏中过表达人Angptl4的转基因小鼠。Angptl4转基因小鼠表现出血浆甘油三酯升高和肝素后血浆(PHP)LPL活性降低。纯化的重组Angptl4蛋白在体外抑制小鼠LPL和重组人LPL活性。与转基因小鼠相反,Angptl4缺陷型小鼠表现出低甘油三酯血症和PHP LPL活性增加,与进食状态相比,禁食状态下的影响更大。Angptl3缺陷型小鼠也表现出低甘油三酯血症和PHP LPL活性升高,但这些小鼠在进食状态下表现出更大的影响。两种Angptl蛋白均缺陷的小鼠对血浆甘油三酯有累加效应,且在2月龄前死亡。我们的结果表明,Angptl3和Angptl4在不同营养状态下调节循环甘油三酯水平,因此通过对LPL的差异抑制在进食/禁食期间的脂质代谢中发挥作用。