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TNF-alpha promotes c-REL/DeltaNp63alpha interaction and TAp73 dissociation from key genes that mediate growth arrest and apoptosis in head and neck

机译:TNF-α促进c-REL / DeltaNp63alpha相互作用和Tap73解离关键基因,介导头颈部生长停滞和细胞凋亡

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摘要

Inflammation-induced activation of proto-oncogenic NF-κB/REL and dysfunction of tumor suppressor TP53/p63/p73 family transcription factors are key events in cancer progression. How inflammatory signaling coordinates dysregulation of these two transcription factor families during oncogenesis remains incompletely understood. Here, we observed that oncoprotein c-REL and tumor suppressor TAp73 are coexpressed and complex with ΔNp63α in the nucleus of a subset of head and neck squamous cell carcinoma (HNSCC) cell lines with mutant (mt)TP53. TNF-α, a proinflammatory cytokine, promoted c-REL nuclear translocation, c-REL/ΔNp63α interaction, and dissociation of TAp73 from ΔNp63α and the nucleus to the cytoplasm, whereas c-REL siRNA knockdown attenuated this effect. Overexpression of c-REL or a c-REL κB-site DNA-binding mutant enhanced protein interaction with ΔNp63α and TAp73 dissociation, implicating c-REL/ΔNp63α-specific interactions in these effects. We discovered that TNF-α or genetic alteration of c-REL expression inversely modulates ΔNp63α/TAp73 interactions on distinct p63 DNA-binding sites, including those for key growth arrest and apoptotic genes p21WAF1, NOXA, and PUMA. Functionally, c-REL repressed these genes and the antiproliferative effects of TNF-α or TAp73. Conversely, c-REL siRNA depletion enhanced TAp73 promoter interaction and expression of genes mediating growth arrest and apoptosis. Similar to TNF-α-treated HNSCC lines, human HNSCC tumors and hyperplastic squamous epithelia of transgenic mice overexpressing ΔNp63α that exhibit inflammation also show increased nuclear c-REL/ΔNp63α and cytoplasmic TAp73 localization. These findings unveil a novel and reversible dynamic mechanism whereby proinflammatory cytokine TNF-α-induced c-REL/ΔNp63α interactions inactivate tumor suppressor TAp73 function, promoting TNF-α resistance and cell survival in cancers with mtTP53.
机译:炎症诱导的原癌性NF-κB/ REL激活和肿瘤抑制因子TP53 / p63 / p73家族转录因子功能障碍是癌症进展的关键事件。在肿瘤发生过程中炎症信号如何协调这两个转录因子家族的失调仍未完全了解。在这里,我们观察到癌蛋白c-REL和肿瘤抑制因子TAp73与ΔNp63α在带有突变(mt)TP53的头颈鳞状细胞癌(HNSCC)细胞系的一部分细胞核中共表达并复合。促炎细胞因子TNF-α促进c-REL核易位,c-REL /ΔNp63α相互作用以及TAp73从ΔNp63α和细胞核到细胞质的解离,而c-REL siRNA的敲低减弱了这种作用。 c-REL或c-RELκB位点DNA结合突变体的过表达增强了与ΔNp63α和TAp73解离的蛋白质相互作用,暗示了c-REL /ΔNp63α特异性相互作用。我们发现,TNF-α或c-REL表达的遗传改变会反向调节不同p63 DNA结合位点上的ΔNp63α/ TAp73相互作用,包括关键生长停滞和凋亡基因p21WAF1,NOXA和PUMA。在功能上,c-REL抑制了这些基因以及TNF-α或TAp73的抗增殖作用。相反,c-REL siRNA消耗增强了TAp73启动子的相互作用以及介导生长停滞和凋亡的基因表达。与TNF-α处理的HNSCC系相似,人类HNSCC肿瘤和过度表达ΔNp63α并发炎的转基因小鼠的增生性鳞状上皮细胞也显示出增加的核c-REL /ΔNp63α和细胞质TAp73定位。这些发现揭示了一种新颖且可逆的动力学机制,促炎细胞因子TNF-α诱导的c-REL /ΔNp63α相互作用使肿瘤抑制因子TAp73的功能失活,从而促进mtTP53的肿瘤的TNF-α抵抗力和细胞存活。

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