首页> 外文期刊>Molecular cancer research: MCR >Nuclear factor-kappaB dimer exchange promotes a p21(waf1/cip1) superinduction response in human T leukemic cells.
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Nuclear factor-kappaB dimer exchange promotes a p21(waf1/cip1) superinduction response in human T leukemic cells.

机译:核因子-κB二聚体交换促进人类T白血病细胞中的p21(waf1 / cip1)超诱导反应。

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摘要

The nuclear factor-kappaB (NF-kappaB)/Rel transcription factors are recognized as critical apoptosis regulators. We reported previously that NF-kappaB contributes to chemoresistance of CEM human T leukemic cells in part through its ability to induce p21(waf1/cip1). Here, we provide evidence that sequential NF-kappaB-activating signals induce heightened NF-kappaB DNA binding and p21(waf1/cip1) induction in CEM and additional T leukemic cell lines. This response arises from exceedingly low basal expression of the p105/p50 NF-kappaB subunit encoded by the NFKB1 gene in these cell lines. An initial NF-kappaB activation event enhances the recruitment of p65 and ELF1 to the NFKB1 promoter, leading to p65- and ELF1-dependent synthesis of p105/p50, which promotes an exchange of NF-kappaB complexes to p50-containing complexes with an increased DNA-binding activity to certain NF-kappaB target elements. Subsequent stimulation of these cells with an anticancer agent, etoposide, results in augmented NF-kappaB-dependent p21(waf1/cip1) induction and increased chemoresistance of the leukemia cells. Thus, we propose that low basal NFKB1 expression coupled with sequential NF-kappaB activation events can promote increased chemoresistance in certain T leukemic cells.
机译:核因子-κB(NF-kappaB)/ Rel转录因子被认为是关键的细胞凋亡调节因子。我们以前曾报道过,NF-kappaB部分通过其诱导p21(waf1 / cip1)的能力而有助于CEM人T白血病细胞的化学耐药性。在这里,我们提供的证据表明,连续的NF-κB激活信号在CEM和其他T白血病细胞系中诱导增强的NF-κBDNA结合和p21(waf1 / cip1)诱导。这些反应是由这些细胞系中由NFKB1基因编码的p105 / p50 NF-kappaB亚基的极低基础表达引起的。最初的NF-kappaB激活事件增强了p65和ELF1向NFKB1启动子的募集,导致p105 / p50的p65和ELF1依赖性合成,从而促进了NF-kappaB复合物向含p50的复合物交换的增加。对某些NF-κB靶标分子的DNA结合活性。随后用抗癌药依托泊苷刺激这些细胞,导致增强的NF-κB依赖性p21(waf1 / cip1)诱导作用,并增加白血病细胞的化学耐药性。因此,我们提出低基础NFKB1表达与连续的NF-κB激活事件相结合可以促进某些T白血病细胞中化学耐药性的增加。

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