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腔隙脂质调节 CD36 水平和下游信号转导,以刺激乳糜微粒的合成。

Luminal lipid regulates CD36 levels and downstream signaling to stimulate chylomicron synthesis.

机构信息

Physiologie de la Nutrition, U866 INSERM/Université de Bourgogne, AgroSup Dijon, 21000 Dijon, France.

出版信息

J Biol Chem. 2011 Jul 15;286(28):25201-10. doi: 10.1074/jbc.M111.233551. Epub 2011 May 24.

Abstract

The membrane glycoprotein CD36 binds nanomolar concentrations of long chain fatty acids (LCFA) and is highly expressed on the luminal surface of enterocytes. CD36 deficiency reduces chylomicron production through unknown mechanisms. In this report, we provide novel insights into some of the underlying mechanisms. Our in vivo data demonstrate that CD36 gene deletion in mice does not affect LCFA uptake and subsequent esterification into triglycerides by the intestinal mucosa exposed to the micellar LCFA concentrations prevailing in the intestine. In rodents, the CD36 protein disappears early from the luminal side of intestinal villi during the postprandial period, but only when the diet contains lipids. This drop is significant 1 h after a lipid supply and associates with ubiquitination of CD36. Using CHO cells expressing CD36, it is shown that the digestion products LCFA and diglycerides trigger CD36 ubiquitination. In vivo treatment with the proteasome inhibitor MG132 prevents the lipid-mediated degradation of CD36. In vivo and ex vivo, CD36 is shown to be required for lipid activation of ERK1/2, which associates with an increase of the key chylomicron synthesis proteins, apolipoprotein B48 and microsomal triglyceride transfer protein. Therefore, intestinal CD36, possibly through ERK1/2-mediated signaling, is involved in the adaptation of enterocyte metabolism to the postprandial lipid challenge by promoting the production of large triglyceride-rich lipoproteins that are rapidly cleared in the blood. This suggests that CD36 may be a therapeutic target for reducing the postprandial hypertriglyceridemia and associated cardiovascular risks.

摘要

膜糖蛋白 CD36 结合纳米摩尔浓度的长链脂肪酸 (LCFA),并在肠上皮细胞的腔面高度表达。CD36 缺乏通过未知机制减少乳糜微粒的产生。在本报告中,我们提供了一些潜在机制的新见解。我们的体内数据表明,CD36 基因缺失的小鼠不会影响肠黏膜对肠道中普遍存在的胶束 LCFA 浓度的 LCFA 摄取和随后的酯化进入甘油三酯。在啮齿动物中,CD36 蛋白在餐后期间从肠绒毛的腔侧早期消失,但仅在饮食中含有脂质时才会消失。这种下降在脂质供应后 1 小时非常明显,并且与 CD36 的泛素化有关。使用表达 CD36 的 CHO 细胞表明,消化产物 LCFA 和二甘油酯触发 CD36 泛素化。体内用蛋白酶体抑制剂 MG132 处理可防止脂质介导的 CD36 降解。在体内和离体,CD36 被证明是脂质激活 ERK1/2 所必需的,这与关键乳糜微粒合成蛋白载脂蛋白 B48 和微粒体甘油三酯转移蛋白的增加有关。因此,肠道 CD36 可能通过 ERK1/2 介导的信号通路参与了肠上皮细胞代谢对餐后脂质挑战的适应,促进了大量富含甘油三酯的脂蛋白的产生,这些脂蛋白在血液中迅速清除。这表明 CD36 可能是减少餐后高甘油三酯血症和相关心血管风险的治疗靶点。

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