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EGF activates TTP expression by activation of ELK-1 and EGR-1 transcription factors

机译:EGF通过激活ELK-1和EGR-1转录因子来激活TTP表达

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摘要

Tristetraprolin (TTP) is a key mediator of processes such as inflammation resolution, the inhibition of autoimmunity and in cancer. It carries out this role by the binding and degradation of mRNA transcripts, thereby decreasing their half-life. Transcripts modulated by TTP encode proteins such as cytokines, pro-inflammatory agents and immediate-early response proteins. TTP can also modulate neoplastic phenotypes in many cancers. TTP is induced and functionally regulated by a spectrum of both pro- and anti-inflammatory cytokines, mitogens and drugs in a MAPK-dependent manner. So far the contribution of p38 MAPK to the regulation of TTP expression and function has been best described. Our results demonstrate the induction of the gene coding TTP (ZFP36) by EGF through the ERK1/2-dependent pathway and implicates the transcription factor ELK-1 in this process. We show that ELK-1 regulates ZFP36 expression by two mechanisms: by binding the ZFP36 promoter directly through ETS-binding site (+ 883 to +905 bp) and by inducing expression of EGR-1, which in turn increases ZFP36 expression through sequences located between -111 and -103 bp. EGF activates TTP expression via ELK-1 and EGR-1 transcription factors.
机译:Tristetraprolin(TTP)是炎症消退,自身免疫抑制和癌症等过程的关键介体。它通过mRNA转录物的结合和降解来发挥这种作用,从而降低其半衰期。由TTP调节的转录本可编码蛋白质,例如细胞因子,促炎药和立即早期应答蛋白质。 TTP还可以调节许多癌症中的肿瘤表型。 TTP由MAPK依赖性方式的多种促炎和抗炎细胞因子,促分裂原和药物共同诱导和功能调节。迄今为止,已经最好地描述了p38 MAPK对TTP表达和功能调节的贡献。我们的结果表明EGF通过ERK1 / 2依赖性途径诱导了编码TTP(ZFP36)的基因,并在此过程中牵涉到转录因子ELK-1。我们显示ELK-1通过两种机制调节ZFP36的表达:通过直接通过ETS结合位点(+ 883至+905 bp)结合ZFP36启动子和诱导EGR-1的表达,进而通过位于序列的序列增加ZFP36的表达-111至-103 bp之间。 EGF通过ELK-1和EGR-1转录因子激活TTP表达。

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