首页> 美国卫生研究院文献>Nucleic Acids Research >NF-kappaB P50/P65 hetero-dimer mediates differential regulation of CD166/ALCAM expression via interaction with micoRNA-9 after serum deprivation providing evidence for a novel negative auto-regulatory loop
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NF-kappaB P50/P65 hetero-dimer mediates differential regulation of CD166/ALCAM expression via interaction with micoRNA-9 after serum deprivation providing evidence for a novel negative auto-regulatory loop

机译:血清剥夺后NF-κBP50 / P65异二聚体通过与micoRNA-9的相互作用介导CD166 / ALCAM表达的差异调节为新型负性自动调节回路提供了证据

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摘要

CD166/ALCAM plays an important role in tumor aggression and progression as well as protecting cancer cells against apoptosis and autophagy. However, the mechanism by which pro-cell death signals control CD166 expression remains unclear. Here we show that following serum deprivation (SD), upregulation of CD166 protein is shorter than that of CD166 mRNA. Molecular analysis revealed both CD166 and miR-9-1 as two novel NF-κB target genes in hepatoma cells. In vivo activation and translocation of the NF-κB P50/P65 hetero-dimer into the nucleus following the phosphorylation and accompanied degradation of its inhibitor, IκBα, contributes to efficient transcription of both genes following SD. We show that following serum starvation, delayed up-regulation of miR-9 represses translation of CD166 protein through its target sites in the 3′-UTR of CD166 mRNA. We also propose that miR-9 promotes cell migration largely due to inhibition of CD166. Collectively, the study elucidates a novel negative auto-regulatory loop in which NF-κB mediates differential regulation of CD166 after SD.
机译:CD166 / ALCAM在肿瘤的侵袭和发展以及保护癌细胞免于凋亡和自噬方面起着重要作用。但是,前细胞死亡信号控制CD166表达的机制仍不清楚。在这里,我们显示血清剥夺(SD)后,CD166蛋白的上调比CD166 mRNA的上调短。分子分析显示CD166和miR-9-1是肝癌细胞中两个新的NF-κB靶基因。磷酸化及其抑制剂IκBα降解后,NF-κBP50 / P65异二聚体在体内的活化和易位到核中,有助于SD后两个基因的有效转录。我们显示出血清饥饿后,miR-9的延迟上调抑制了CD166蛋白通过其在CD166 mRNA 3'-UTR中的靶位点的翻译。我们还提出,miR-9主要由于抑制CD166而促进细胞迁移。总的来说,这项研究阐明了一个新的负自我调节循环,其中NF-κB介导SD后CD166的差异调节。

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