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过氧化物酶体增殖物激活受体α基因敲除小鼠的白色脂肪组织葡萄糖利用率、葡萄糖转运蛋白4及脂肪量增加:在肝脏和大脑中的作用

Peroxisome proliferator-activated receptor-alpha-null mice have increased white adipose tissue glucose utilization, GLUT4, and fat mass: Role in liver and brain.

作者信息

Knauf Claude, Rieusset Jennifer, Foretz Marc, Cani Patrice D, Uldry Marc, Hosokawa Masaya, Martinez Estelle, Bringart Matthieu, Waget Aurélie, Kersten Sander, Desvergne Béatrice, Gremlich Sandrine, Wahli Walter, Seydoux Josiane, Delzenne Nathalie M, Thorens Bernard, Burcelin Rémy

机构信息

Unit Mixté de Recherche, 5018, Centre National de la Recherche Scientifique-University Paul Sabatier, IFR 31, Bt L1 Rue J. Poulhès, 31403 Toulouse, France.

出版信息

Endocrinology. 2006 Sep;147(9):4067-78. doi: 10.1210/en.2005-1536. Epub 2006 Jun 15.

Abstract

Activation of the peroxisome proliferator-activated receptor (PPAR)-alpha increases lipid catabolism and lowers the concentration of circulating lipid, but its role in the control of glucose metabolism is not as clearly established. Here we compared PPARalpha knockout mice with wild type and confirmed that the former developed hypoglycemia during fasting. This was associated with only a slight increase in insulin sensitivity but a dramatic increase in whole-body and adipose tissue glucose use rates in the fasting state. The white sc and visceral fat depots were larger due to an increase in the size and number of adipocytes, and their level of GLUT4 expression was higher and no longer regulated by the fed-to-fast transition. To evaluate whether these adipocyte deregulations were secondary to the absence of PPARalpha from liver, we reexpresssed this transcription factor in the liver of knockout mice using recombinant adenoviruses. Whereas more than 90% of the hepatocytes were infected and PPARalpha expression was restored to normal levels, the whole-body glucose use rate remained elevated. Next, to evaluate whether brain PPARalpha could affect glucose homeostasis, we activated brain PPARalpha in wild-type mice by infusing WY14643 into the lateral ventricle and showed that whole-body glucose use was reduced. Hence, our data show that PPARalpha is involved in the regulation of glucose homeostasis, insulin sensitivity, fat accumulation, and adipose tissue glucose use by a mechanism that does not require PPARalpha expression in the liver. By contrast, activation of PPARalpha in the brain stimulates peripheral glucose use. This suggests that the alteration in adipocyte glucose metabolism in the knockout mice may result from the absence of PPARalpha in the brain.

摘要

过氧化物酶体增殖物激活受体(PPAR)-α的激活可增加脂质分解代谢并降低循环脂质浓度,但其在葡萄糖代谢控制中的作用尚未明确确立。在此,我们将PPARα基因敲除小鼠与野生型小鼠进行比较,并证实前者在禁食期间会出现低血糖。这仅与胰岛素敏感性略有增加相关,但在禁食状态下全身和脂肪组织的葡萄糖利用率显著增加。白色皮下和内脏脂肪库因脂肪细胞大小和数量增加而更大,其GLUT4表达水平更高,且不再受进食到禁食转变的调节。为了评估这些脂肪细胞失调是否继发于肝脏中PPARα的缺失,我们使用重组腺病毒在基因敲除小鼠的肝脏中重新表达了这种转录因子。虽然超过90%的肝细胞被感染且PPARα表达恢复到正常水平,但全身葡萄糖利用率仍保持升高。接下来,为了评估脑内PPARα是否会影响葡萄糖稳态,我们通过向野生型小鼠侧脑室注入WY14643来激活脑内PPARα,结果显示全身葡萄糖利用率降低。因此,我们的数据表明,PPARα通过一种不需要在肝脏中表达PPARα的机制参与葡萄糖稳态、胰岛素敏感性、脂肪积累和脂肪组织葡萄糖利用的调节。相比之下,脑内PPARα的激活会刺激外周葡萄糖利用。这表明基因敲除小鼠脂肪细胞葡萄糖代谢的改变可能是由于脑内缺乏PPARα所致。

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