首页> 外文OA文献 >Chito-Oligosaccharide Inhibits the De-Methylation of a CpG Island within the Leptin (LEP) Promoter during Adipogenesis of 3T3-L1 Cells
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Chito-Oligosaccharide Inhibits the De-Methylation of a CpG Island within the Leptin (LEP) Promoter during Adipogenesis of 3T3-L1 Cells

机译:壳寡糖抑制3T3-L1细胞成脂过程中瘦素(LEP)启动子内CpG岛的去甲基化。

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摘要

Chito-oligosaccharide (COS) is a natural bioactive compound, which has been shown to suppress lipid metabolic genes and lipid accumulation in differentiating adipocytes. Leptin has been identified as a key regulator of energy homeostasis and is known to be under epigenetic regulation during adipogenesis. Hence, the first objective of this experiment was to compare leptin gene (LEP) expression and leptin secretion during the different stages of adipogenesis and to investigate the effect of COS on these processes. As COS inhibited LEP expression during adipogenesis, the second aim was to investigate the methylation dynamics of a ¿CpG¿ island in the proximal region of the LEP promoter during adipogenesis and to determine the effect of COS on this process. Mouse 3T3-L1 cells were stimulated to differentiate in the absence or presence of COS and the levels of leptin mRNA and protein were evaluated on days 0, 2, 4 and 6 post-induction of differentiation (PID). The extent of de-methylation of six CpG sites was evaluated. LEP mRNA transcript and protein could not be detected on either day 0PID or 2PID. In contrast, both were detected on day 4PID (P<0.05) and 6PID (P<0.001) and both were inhibited by COS (P<0.001). Of the six CpG sites analyzed, CpG_52, CpG_62 and CpG_95 became 11.5, 5.0 and 5.0% de-methylated between day 2PID and 6PID, respectively. COS blocked this de-methylation event at CpG_52 (P<0.001), CpG_62 (P<0.01) and CpG_95 (P<0.01) on day 6PID. These data suggest that COS can have an epigenetic effect on differentiating adipocytes, a novel biological function of COS which has potential applications for the manipulation of leptin gene expression, adipogenesis, and conditions within the metabolic syndrome spectrum.
机译:壳寡糖(COS)是一种天然的生物活性化合物,已被证明可以抑制脂质代谢基因和脂质在分化的脂肪细胞中的积累。瘦素已被确定为能量稳态的关键调节剂,并且已知在脂肪形成过程中其处于表观遗传调节之下。因此,该实验的第一个目的是比较脂肪形成不同阶段的瘦素基因(LEP)表达和瘦素分泌,并研究COS对这些过程的影响。由于COS在脂肪形成过程中抑制LEP表达,因此第二个目的是研究脂肪形成过程中LEP启动子近端区域CpG岛的甲基化动力学,并确定COS在此过程中的作用。在不存在或存在COS的情况下,刺激小鼠3T3-L1细胞分化,并在分化诱导(PID)后第0、2、4和6天评估瘦素mRNA和蛋白质的水平。评价了六个CpG位点的去甲基化程度。在第0PID天或第2PID天均未检测到LEP mRNA转录物和蛋白质。相反,两者均在第4PID天(P <0.05)和6PID(P <0.001)被检测到,并且都被COS抑制(P <0.001)。在所分析的六个CpG位点中,CpG_52,CpG_62和CpG_95在第2PID天和第6PID天分别脱甲基了11.5、5.0和5.0%。 COS在第6天(PID)阻断了CpG_52(P <0.001),CpG_62(P <0.01)和CpG_95(P <0.01)的去甲基化事件。这些数据表明,COS可以对脂肪细胞的分化产生表观遗传作用,这是COS的一种新的生物学功能,具有操纵瘦素基因表达,脂肪形成和代谢综合征谱系条件的潜在应用。

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