首页> 外文期刊>The Journal of biological chemistry >FoxO1 Inhibits Sterol Regulatory Element-binding Protein-1c (SREBP-1c) Gene Expression via Transcription Factors Sp1 and SREBP-1c
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FoxO1 Inhibits Sterol Regulatory Element-binding Protein-1c (SREBP-1c) Gene Expression via Transcription Factors Sp1 and SREBP-1c

机译:FOXO1通过转录因子SP1和Srebp-1c抑制甾醇调节元素结合蛋白-1c(srebp-1c)基因表达

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Induction of lipogenesis in response to insulin is critically dependent on the transcription factor, sterol regulatory element-binding protein-1c (SREBP-1c). FoxO1, a forkhead box class-O transcription factor, is an important mediator of insulin action, but its role in the regulation of lipid metabolism has not been clearly defined. We examined the effects of FoxO1 on srebp1 gene expression in vivo and in vitro. In vivo studies showed that constitutively active (CA) FoxO1 (CA-FoxO1) reduced basal expression of SREBP-1c mRNA in liver by ~60% and blunted induction of SREBP-1c in response to feeding. In liver-specific FoxO knock-out mice, SREBP-1c expression was increased ~2-fold. Similarly, in primary hepatocytes, CA-FoxO1 suppressed SREBP1-c expression and inhibited basal and insulin-induced SREBP-1c promoter activity. SREBP-1c gene expression is induced by the liver X receptor (LXR), but CA-FoxO1 did not block the activation of SREBP-1c by the LXR agonist TO9. Insulin stimulates SREBP-1c transcription through Sp1 and via “feed forward” regulation by newly synthesized SREBP-1c. CA-FoxO1 inhibited SREBP-1c by reducing the transactivational capacity of both Sp1 and SREBP-1c. In addition, chromatin immunoprecipitation assays indicate that FoxO1 can associate with the proximal promoter region of the srebp1 gene and disrupt the assembly of key components of the transcriptional complex of the SREBP-1c promoter. We conclude that FoxO1 inhibits SREBP-1c transcription via combined actions on multiple transcription factors and that this effect is exerted at least in part through reduced transcriptional activity of Sp1 and SREBP-1c and disrupted assembly of the transcriptional initiation complex on the SREBP-1c promoter.
机译:对胰岛素响应脂肪生成的诱导至关重要地取决于转录因子,甾醇调节元素结合蛋白-1C(Srebp-1c)。 FOXO1,叉头盒Class-O转录因子,是胰岛素作用的重要介质,但其在脂质代谢调节中的作用尚未明确定义。我们研究了FOXO1对体内和体外Srebp1基因表达的影响。体内研究表明,组成型活性(CA)FOXO1(CA-FOXO1)降低了肝脏中Srebp-1C mRNA的基础表达〜60%并响应于进料而截然不变。在肝脏特异性FOXO敲除小鼠中,Srebp-1C表达增加〜2倍。类似地,在原发性肝细胞中,Ca-FoxO1抑​​制了SreBP1-C表达并抑制基础和胰岛素诱导的SreBP-1C启动子活性。 SREBP-1C基因表达由肝X受体(LXR)诱导,但CA-FOXO1未通过LXR激动剂TO9阻断SREBP-1C的活化。胰岛素通过SP1刺激Srebp-1c转录,并通过新合成的Srebp-1c通过“饲料向前”调节。 CA-FOXO1通过降低SP1和Srebp-1C的反式激活容量来抑制Srebp-1c。另外,染色质免疫沉淀测定表明FoxO1可以与SrebP1基因的近端启动子区相关联,并破坏Srebp-1C启动子的转录复合物的关键组分组件。我们得出结论,FOXO1通过多种转录因子的组合作用抑制Srebp-1c转录,并且这种效果至少部分地通过降低SP1和Srebp-1c的转录活性并破坏Srebp-1C启动子上的转录引发络合物的组装。

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