首页> 外文期刊>Peptides: An International Journal >(-)-Ternatin inhibits adipogenesis and lipid metabolism in 3T3-L1 cells.
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(-)-Ternatin inhibits adipogenesis and lipid metabolism in 3T3-L1 cells.

机译:(-)-Teratin抑制3T3-L1细胞中的脂肪形成和脂质代谢。

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摘要

(-)-Ternatin, a highly N-methylated cyclic peptide, inhibits fat accumulation in 3T3-L1 cells and reduces fat mass in mice. However, the mechanism for its anti-adipogenic effect has remained unknown. To examine the mechanism used by (-)-ternatin to inhibit adipocyte differentiation, we examined the effects of (-)-ternatin and [l-Ala(4)]ternatin, an inactive analog of (-)-ternatin, on the expression of adipocyte markers and lipogenic enzymes. We found that (-)-ternatin potently reduced mRNA expression of several adipocyte markers in a dose-dependent manner, whereas [l-Ala(4)]ternatin showed no effects. At the immediate early phase, (-)-ternatin, but not [l-Ala(4)]ternatin, reduced the expression of Srebp1c, Fas, Acc2 and C/EBP-alpha while showing no effects on C/EBP-beta and C/EBP-delta. These results suggest that (-)-ternatin affects the mid-to late differentiation stages of adipocytes. Consistent with the decreased expression of lipogenic enzymes, (-)-ternatin potently inhibited triglyceride synthesis. Intriguingly, (-)-ternatin also inhibited triglyceride synthesis in rat primary hepatocytes, suggesting that the potential action sites for (-)-ternatin are shared by adipocytes and liver. Although the target molecule of (-)-ternatin remains unknown, our data suggest that (-)-ternatin and its potential target might provide a new therapeutic approach to metabolic disorders.
机译:(-)-Ternatin是一种高度N-甲基化的环肽,可抑制3T3-L1细胞中的脂肪积累,并减少小鼠的脂肪量。然而,其抗脂肪形成作用的机制仍是未知的。为了检查(-)-替他汀抑制脂肪细胞分化的机制,我们研究了(-)-替他汀和一种无活性的(-)-替他汀类似物[-Ala(4)]替他汀对表达的影响脂肪细胞标志物和脂肪形成酶我们发现(-)ternatin可能以剂量依赖的方式有效地降低了几种脂肪细胞标志物的mRNA表达,而[1-Ala(4)] ternatin则没有作用。在早期阶段,(-)-ternatin降低了Srebp1c,Fas,Acc2和C / EBP-alpha的表达,但对C / EBP-beta和C-EBP-beta没有影响,但[1-Ala(4)] ternatin却没有降低。 C / EBP增量。这些结果表明(-)-ternatin影响脂肪细胞的中晚期分化阶段。与降低脂肪酶的表达相一致,(-)-替他汀有效抑制甘油三酸酯的合成。有趣的是,(-)-ternatin也抑制了大鼠原代肝细胞中甘油三酸酯的合成,这表明(-)-ternatin的潜在作用部位由脂肪细胞和肝脏共享。尽管(-)-ternatin的靶分子仍然未知,但我们的数据表明(-)-ternatin及其潜在靶标可能为代谢性疾病提供新的治疗方法。

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