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首页> 外文期刊>Autophagy >Loss of ULK1 increases RPS6KB1-NCOR1 repression of NR1H/LXR-mediated Scd1 transcription and augments lipotoxicity in hepatic cells
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Loss of ULK1 increases RPS6KB1-NCOR1 repression of NR1H/LXR-mediated Scd1 transcription and augments lipotoxicity in hepatic cells

机译:ULK1的丧失增加了NR1H / LXR介导的SCD1转录的RPS6KB1-Ncor1抑制,并增加了肝细胞中的脂毒性

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摘要

Lipotoxicity caused by saturated fatty acids (SFAs) induces tissue damage and inflammation in metabolic disorders. SCD1 (stearoyl-coenzyme A desaturase 1) converts SFAs to mono-unsaturated fatty acids (MUFAs) that are incorporated into triglycerides and stored in lipid droplets. SCD1 thus helps protect hepatocytes from lipotoxicity and its reduced expression is associated with increased lipotoxic injury in cultured hepatic cells and mouse models. To further understand the role of SCD1 in lipotoxicity, we examined the regulation of Scd1 in hepatic cells treated with palmitate, and found that NR1H/LXR (nuclear receptor subfamily 1 group H) ligand, GW3965, induced Scd1 expression and lipid droplet formation to improve cell survival. Surprisingly, ULK1/ATG1 (unc-51 like kinase) played a critical role in protecting hepatic cells from SFA-induced lipotoxicity via a novel mechanism that did not involve macroautophagy/autophagy. Specific loss of Ulk1 blocked the induction of Scd1 gene transcription by GW3965, decreased lipid droplet formation, and increased apoptosis in hepatic cells exposed to palmitate. Knockdown of ULK1 increased RPS6KB1 (ribosomal protein S6 kinase, polypeptide 1) signaling that, in turn, induced NCOR1 (nuclear receptor co-repressor 1) nuclear uptake, interaction with NR1H/LXR, and recruitment to the Scd1 promoter. These events abrogated the stimulation of Scd1 gene expression by GW3965, and increased lipotoxicity in hepatic cells. In summary, we have identified a novel autophagy-independent role of ULK1 that regulates NR1H/LXR signaling, Scd1 expression, and intracellular lipid homeostasis in hepatic cells exposed to a lipotoxic environment.
机译:由饱和脂肪酸(SFA)引起的脂毒性诱导组织损伤和代谢紊乱中的炎症。 SCD1(硬脂酰基辅酶A去饱和酶1)将SFA转化为掺入甘油三酯中并储存在脂质液滴中的单 - 不饱和脂肪酸(MUFA)。因此,SCD1有助于保护肝细胞免受脂毒性,其表达的降低与培养的肝细胞和小鼠模型的脂毒性损伤增加有关。为了进一步了解SCD1在脂毒性中的作用,我们研究了棕榈酸盐处理的肝细胞中SCD1的调节,发现NR1H / LXR(核受体亚家族1组H)配体,GW3965,诱导的SCD1表达和脂液滴形成改善细胞存活。令人惊讶的是,ULK1 / ATG1(UNC-51喜欢激酶)在通过不涉及大规模植物/自噬的新机制来保护来自SFA诱导的脂毒性的肝细胞的关键作用。 ULK1的特异性损失阻断了GW3965的SCD1基因转录的诱导,降低了脂质液滴形成,并且在暴露于棕榈酸酯的肝细胞中增加的凋亡。 ULK1的敲低增加RPS6KB1(核糖体蛋白S6激酶,多肽1)信号传导,反过来,依次诱导Ncor1(核受体Co-re-re-Re-压缩机1)核吸收,与NR1H / LXR的相互作用,以及对SCD1启动子的募集。这些事件废除了GW3965的SCD1基因表达的刺激,并增加了肝细胞中的脂毒性。总之,我们已经确定了ULK1的新型自噬 - 独立作用,其调节NR1H / LXR信令,SCD1表达和细胞内脂质稳态,所述肝细胞暴露于脂毒性环境。

著录项

  • 来源
    《Autophagy》 |2017年第1期|共18页
  • 作者单位

    Duke NUS Grad Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat 8 Coll Rd;

    Duke NUS Grad Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat 8 Coll Rd;

    Duke NUS Grad Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat 8 Coll Rd;

    Duke NUS Grad Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat 8 Coll Rd;

    Duke NUS Grad Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat 8 Coll Rd;

    Duke NUS Grad Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat 8 Coll Rd;

    Duke NUS Grad Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat 8 Coll Rd;

    Natl Neurosci Inst Singapore Stroke Trial Unit Singapore Singapore;

    Duke NUS Grad Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat 8 Coll Rd;

    Beth Israel Deaconess Med Ctr Div Endocrinol Diabet &

    Metab Boston MA 02215 USA;

    Duke NUS Grad Med Sch Cardiovasc &

    Metab Disorders Program Lab Hormonal Regulat 8 Coll Rd;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 预防医学、卫生学;
  • 关键词

    autophagy; lipid droplets; lipotoxicity; LXR; NASH; NCOR1; RPS6KB1; SCD1; ULK1;

    机译:自噬;脂液滴;脂毒性;LXR;纳什;Ncor1;RPS6KB1;SCD1;ULK1;

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