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首页> 外文期刊>Metabolomics >Stearoyl-CoA desaturase enzyme 1 inhibition reduces glucose utilization for de novo fatty acid synthesis and cell proliferation in 3T3-L1 adipocytes
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Stearoyl-CoA desaturase enzyme 1 inhibition reduces glucose utilization for de novo fatty acid synthesis and cell proliferation in 3T3-L1 adipocytes

机译:硬脂酰辅酶A去饱和酶1抑制可降低3T3-L1脂肪细胞中从头脂肪酸合成和细胞增殖的葡萄糖利用率

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摘要

Stearoyl-CoA desaturase enzyme 1 (SCD1) is a lipogenic enzyme that is upregulated in obesity, insulin resistance, and cancer. Since glucose is a substrate for both de novo fatty acid synthesis and deoxyribose synthesis, we hypothesized that SCD1 affects these multiple synthetic pathways through changes in glucose utilization. This study determined glucose utilization for fatty acid synthesis and cell proliferation in 3T3-L1 preadipocytes during SCD1 inhibition. The effects of SCD1 on cellular metabolism as mediated by its monounstaurated fatty acid products (palmitoleate and oleate) were also observed. 3T3-L1 preadipocytes underwent differentiation induction in conjunction with one of the following treatments for 4 days: (A) no treatment, (B) SCD1 inhibitor CGX0290, (C) CGX0290 + palmitoleate, or (D) CGX0290 + oleate. All cells received medium with 50 % [U13C]-glucose. Cells were harvested on day 7 for studies of fatty acid metabolism, tricarboxylic acid (TCA) cycle activities, and deoxyribose synthesis. CGX0290 decreased fatty acid desaturation, glucose utilization for fatty acid synthesis (acetyl-CoA enrichment), and de novo synthesis. CGX0290 treatment also led to decreased cell density through increased cell death. Further analysis showed that deoxyribose new synthesis and oxidative pentose phosphate pathway activity were unchanged, while non-oxidative transketolase pathway activity was stimulated. Palmitoleate and oleate supplementation each partially ameliorated the effects of CGX0290. In 3T3-L1 cells, SCD1 promotes glucose utilization for fatty acid synthesis. In cell proliferation, SCD1 may promote cell survival, but does not impact the oxidative pathway of deoxyribose production. These effects may be mediated through the production of palmitoleate and oleate.
机译:硬脂酰CoA去饱和酶1(SCD1)是一种脂肪生成酶,在肥胖症,胰岛素抵抗和癌症中被上调。由于葡萄糖是从头脂肪酸合成和脱氧核糖合成的底物,因此我们假设SCD1通过改变葡萄糖利用来影响这些多种合成途径。这项研究确定了SCD1抑制过程中3T3-L1前脂肪细胞中脂肪酸合成和细胞增殖中葡萄糖的利用。还观察到SCD1对细胞代谢的影响,该作用是由其单一未饱和脂肪酸产物(棕榈油酸酯和油酸酯)介导的。 3T3-L1前脂肪细胞结合以下其中一种治疗方法进行分化诱导4天:(A)不治疗,(B)SCD1抑制剂CGX0290,(C)CGX0290 +棕榈油酸酯,或(D)CGX0290 +油酸酯。所有细胞均接受含有50%[U13C]-葡萄糖的培养基。在第7天收获细胞用于研究脂肪酸代谢,三羧酸(TCA)循环活性和脱氧核糖合成。 CGX0290降低了脂肪酸的去饱和度,减少了葡萄糖用于脂肪酸合成(乙酰辅酶A富集)和从头合成的过程。 CGX0290处理还通过增加细胞死亡而导致细胞密度降低。进一步的分析表明,脱氧核糖的新合成和氧化戊糖磷酸途径的活性没有改变,而非氧化转酮酶途径的活性受到了刺激。棕榈油酸酯和油酸酯的添加分别部分改善了CGX0290的作用。在3T3-L1细胞中,SCD1促进葡萄糖用于脂肪酸合成。在细胞增殖中,SCD1可以促进细胞存活,但不影响脱氧核糖产生的氧化途径。这些作用可以通过棕榈油酸酯和油酸酯的产生来介导。

著录项

  • 来源
    《Metabolomics 》 |2013年第4期| 809-816| 共8页
  • 作者单位

    Department of Pediatrics Los Angeles Biomedical Research Institute at Harbor-UCLA Medical Center">(1);

    Department of Pediatrics Los Angeles Biomedical Research Institute at Harbor-UCLA Medical Center">(1);

    Department of Pediatrics Los Angeles Biomedical Research Institute at Harbor-UCLA Medical Center">(1);

    Department of Pediatrics Los Angeles Biomedical Research Institute at Harbor-UCLA Medical Center">(1);

    Department of Pediatrics Los Angeles Biomedical Research Institute at Harbor-UCLA Medical Center">(1);

    Department of Pediatrics Los Angeles Biomedical Research Institute at Harbor-UCLA Medical Center">(1);

    Department of Pediatrics Los Angeles Biomedical Research Institute at Harbor-UCLA Medical Center">(1);

    Department of Pediatrics Los Angeles Biomedical Research Institute at Harbor-UCLA Medical Center">(1);

    Department of Pediatrics Los Angeles Biomedical Research Institute at Harbor-UCLA Medical Center">(1);

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Stearoyl-CoA desaturase enzyme 1; Glucose utilization; Cell proliferation; Lipogenesis; Stable isotopes; Pentose phosphate pathway;

    机译:硬脂酰-CoA去饱和酶1;葡萄糖利用;细胞增殖;脂肪生成;稳定同位素;磷酸戊糖途径;

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