Trent Chad M, Yu Shuiqing, Hu Yunying, Skoller Nathan, Huggins Lesley A, Homma Shunichi, Goldberg Ira J
Division of Preventive Medicine and Nutrition, Columbia University College of Physicians and Surgeons, New York, NY 10032.
J Lipid Res. 2014 Apr;55(4):645-58. doi: 10.1194/jlr.M043471. Epub 2014 Feb 3.
The rodent heart accumulates TGs and lipid droplets during fasting. The sources of heart lipids could be either FFAs liberated from adipose tissue or FAs from lipoprotein-associated TGs via the action of lipoprotein lipase (LpL). Because circulating levels of FFAs increase during fasting, it has been assumed that albumin transported FFAs are the source of lipids within heart lipid droplets. We studied mice with three genetic mutations: peroxisomal proliferator-activated receptor α deficiency, cluster of differentiation 36 (CD36) deficiency, and heart-specific LpL deletion. All three genetically altered groups of mice had defective accumulation of lipid droplet TGs. Moreover, hearts from mice treated with poloxamer 407, an inhibitor of lipoprotein TG lipolysis, also failed to accumulate TGs, despite increased uptake of FFAs. TG storage did not impair maximal cardiac function as measured by stress echocardiography. Thus, LpL hydrolysis of circulating lipoproteins is required for the accumulation of lipids in the heart of fasting mice.
在禁食期间,啮齿动物的心脏会积累甘油三酯(TGs)和脂滴。心脏脂质的来源可能是从脂肪组织中释放的游离脂肪酸(FFAs),或者是通过脂蛋白脂肪酶(LpL)的作用从脂蛋白相关TGs中获得的脂肪酸。由于禁食期间循环中的FFA水平会升高,因此一直认为白蛋白运输的FFAs是心脏脂滴内脂质的来源。我们研究了具有三种基因突变的小鼠:过氧化物酶体增殖物激活受体α缺陷、分化簇36(CD36)缺陷以及心脏特异性LpL缺失。所有这三组基因改变的小鼠在脂滴TGs的积累方面都存在缺陷。此外,用泊洛沙姆407(一种脂蛋白TG脂解抑制剂)处理的小鼠心脏,尽管FFA摄取增加,但也未能积累TGs。通过应激超声心动图测量,TG储存并未损害最大心脏功能。因此,循环脂蛋白的LpL水解对于禁食小鼠心脏中脂质的积累是必需的。