首页> 美国卫生研究院文献>Genes >Long Non-Coding RNA NEAT1 Associates with SRp40 to Temporally Regulate PPARγ2 Splicing during Adipogenesis in 3T3-L1 Cells
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Long Non-Coding RNA NEAT1 Associates with SRp40 to Temporally Regulate PPARγ2 Splicing during Adipogenesis in 3T3-L1 Cells

机译:长非编码RNA NEAT1与SRp40关联以在3T3-L1细胞成脂过程中暂时调节PPARγ2剪接。

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摘要

Long non-coding (lnc) RNAs serve a multitude of functions in cells. NEAT1 RNA is a highly abundant 4 kb lncRNA in nuclei, and coincides with paraspeckles, nuclear domains that control sequestration of paraspeckle proteins. We examined NEAT1 RNA levels and its function in 3T3-L1 cells during differentiation to adipocytes. Levels of NEAT1 transcript, measured by RT-PCR, fluctuated in a temporal manner over the course of differentiation that suggested its role in alternative splicing of PPARγ mRNA, the major transcription factor driving adipogenesis. When cells were induced to differentiate by a media cocktail of insulin, dexamethasone, and isobutylmethyxanthine (IBMX) on Day 0, NEAT1 levels dropped on Day 4, when the PPARγ2 variant was spliced and when terminal differentiation occurs The appearance of PPARγ2 coordinates with the PPARγ1 variant to drive differentiation of adipocytes. SiRNA used to deplete NEAT1 resulted in the inability of cells to phosphorylate the serine/arginine-rich splicing protein, SRp40. SiRNA treatment for SRp40 resulted in dysregulation of PPARγ1 and, primarily, PPARγ2 mRNA levels. SRp40 associated with NEAT1, as shown by RNA-IP on days 0 and 8, but decreased on day 4, and concentrations increased over that of IgG control. Overexpression of SRp40 increased PPARγ2, but not γ1. Although lncRNA MALAT1 has been investigated in SR protein function, NEAT1 has not been shown to bind SR proteins for phosphorylation such that alternative splicing results. The ability of cells to increase phosphorylated SR proteins for PPARγ2 splicing suggests that fluxes in NEAT1 levels during adipogenesis regulate alternative splicing events.
机译:长的非编码(lnc)RNA在细胞中发挥多种功能。 NEAT1 RNA是细胞核中高度丰富的4 kb lncRNA,与副斑点(控制副斑点蛋白螯合的核域)重合。我们检查了向脂肪细胞分化过程中3T3-L1细胞中NEAT1 RNA的水平及其功能。通过RT-PCR测量的NEAT1转录水平在分化过程中随时间波动,表明其在PPARγmRNA的选择性剪接中起着重要的作用,PPARγmRNA是驱动脂肪形成的主要转录因子。当在第0天通过胰岛素,地塞米松和异丁基甲基黄嘌呤(IBMX)的培养基混合物诱导细胞分化时,在第4天,当剪接PPARγ2变体并发生终末分化时,NEAT1水平下降。PPARγ2的出现与PPARγ1协调变异来驱动脂肪细胞的分化。用于耗尽NEAT1的SiRNA导致细胞无法磷酸化富含丝氨酸/精氨酸的剪接蛋白SRp40。 SRp40的SiRNA处理导致PPARγ1失调,主要是PPARγ2mRNA水平失调。 SRp40与NEAT1相关,如第0天和第8天的RNA-IP所示,但在第4天下降,且浓度高于IgG对照。 SRp40的过表达增加PPARγ2,但不增加γ1。尽管已经研究了lncRNA MALAT1的SR蛋白功能,但尚未显示出NEAT1结合SR蛋白进行磷酸化,从而产生其他剪接。细胞为PPARγ2剪接增加磷酸化SR蛋白的能力表明,脂肪形成过程中NEAT1水平的通量调节了其他剪接事件。

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