Amri E Z, Teboul L, Vannier C, Grimaldi P A, Ailhaud G
Centre de Biochimie du CNRS (UMR 134), Université de Nice-Sophia Antipolis, UFR Sciences, Parc Valrose, Nice, France.
Biochem J. 1996 Mar 1;314 ( Pt 2)(Pt 2):541-6. doi: 10.1042/bj3140541.
During fasting, a reduction in lipoprotein lipase (LPL) activity has been observed in rat fat pad with no change in enzyme mass, whereas LPL mRNA and synthesis are increased, suggesting that insulin and/or fatty acids (FA) regulate LPL activity post-translationaly [Doolittle, Ben-Zeev, Elovson, Martin and Kirchgessner (1990) J. Biol. Chem. 265, 4570-4577]. To examine the role of FA, either preadipose Ob1771 cells or Ob1771 and 3T3-F442A adipose cells were exposed to long-chain FA and to 2-bromopalmitate, a non-metabolized FA. A rapid (2-8 h) and dose-dependent increase (up to 6-fold) in LPL mRNA occurred, primarily due to increased transcription, which is accompanied by a decrease (down to 4-fold) in LPL cellular activity. Under these conditions, secretion of active LPL was nearly abolished. Removal of FA led to full recovery of LPL activity. LPL gene expression in 3T3-C2 fibroblasts was not affected by FA treatment. However fatty acid-activated receptor transfected-3T3-C2 cells, which show FA responsiveness, had increased LPL gene expression upon FA addition. LPL synthesis and cellular content appeared unaffected by FA treatment, whereas secretion of LPL was inhibited. These results indicate that FA regulate the post-translational processing of LPL. It is proposed that the regulation of LPL activity by FA is important with regard to the fine-tuning of FA entry into adipocytes during fasting/feeding periods.
在禁食期间,观察到大鼠脂肪垫中的脂蛋白脂肪酶(LPL)活性降低,而酶量没有变化,然而LPL mRNA和合成增加,这表明胰岛素和/或脂肪酸(FA)在翻译后调节LPL活性[杜利特尔、本-泽夫、埃洛夫森、马丁和基尔希格斯纳(1990年)《生物化学杂志》265卷,4570 - 4577页]。为了研究FA的作用,将前脂肪细胞Ob1771或Ob1771和3T3 - F442A脂肪细胞暴露于长链FA和2 - 溴棕榈酸酯(一种非代谢性FA)中。LPL mRNA迅速(2 - 8小时)且呈剂量依赖性增加(高达6倍),主要是由于转录增加,同时LPL细胞活性降低(降至4倍)。在这些条件下,活性LPL的分泌几乎被消除。去除FA导致LPL活性完全恢复。3T3 - C2成纤维细胞中的LPL基因表达不受FA处理的影响。然而,转染了脂肪酸激活受体的3T3 - C2细胞表现出对FA的反应性,在添加FA后LPL基因表达增加。LPL合成和细胞含量似乎不受FA处理的影响,而LPL的分泌受到抑制。这些结果表明FA调节LPL的翻译后加工。有人提出,FA对LPL活性的调节对于在禁食/进食期间微调FA进入脂肪细胞的过程很重要。