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首页> 外文期刊>International Journal of Cancer =: Journal International du Cancer >A signal network involving coactivated NF-kappaB and STAT3 and altered p53 modulates BAX/BCL-XL expression and promotes cell survival of head and neck squamous cell carcinomas.
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A signal network involving coactivated NF-kappaB and STAT3 and altered p53 modulates BAX/BCL-XL expression and promotes cell survival of head and neck squamous cell carcinomas.

机译:包含共激活的NF-κB和STAT3以及改变的p53的信号网络可调节BAX / BCL-XL表达并促进头颈部鳞状细胞癌的细胞存活。

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Abrogation of apoptosis to sustain cell survival is an essential step in development of cancer. Aberrant activation of signal transcription factors NF-kappaB or STAT3, alterations in p53 status, or BCL/BAX family expression have each been reported to affect cell survival in cancer, including head and neck squamous cell carcinomas (HNSCC). However, molecular targeting of these alterations individually has yielded disappointing results. In our study, we examined the hypothesis that alterations in a signal network involving NF-kappaB, STAT3 and p53 modulates expression of proapoptotic BAX and antiapoptotic BCL-XL proteins, and promotes cell survival of HNSCC. We found that NF-kappaB and STAT3 are coactivated together, and with cytokine stimulation or siRNA knock-down, both modulate BAX/BCL-XL. Greater modulation among HNSCC lines expressing low wt p53 than those over-expressing mt p53 protein suggested that decreased p53 expression might enhance activation of NF-kappaB, STAT3 and BCL-XL. Reexpression of wt p53 suppressed NF-kappaB and STAT3 nuclear binding activity, and BCL-XL expression, while inducing p21 and BAX. Over-expression of p53 together with inhibition of NF-kappaB or STAT3 induced greater increase in the BAX/BCL-XL ratio and apoptosis than modulation of these transcription factors individually. Conversely, NF-kappaB or STAT3 inducing cytokines decreased the BAX/BCL-XL ratio. Thus, a network involving signal coactivation of NF-kappaB and STAT3, differentially modified by p53 inactivation or mutation, promotes altered BAX/BCL-XL expression and cell survival in HNSCC. Inhibition of signal activation of both NF-kappaB and STAT3 together with reexpression of p53 could be the most effective strategy to restore BAX/BCL-XL regulation and for cytotoxic therapy of HNSCC.
机译:放弃凋亡以维持细胞存活是癌症发展中的重要步骤。据报道,信号转录因子NF-κB或STAT3的异常激活,p53状态的改变或BCL / BAX家族表达均会影响包括头颈部鳞状细胞癌(HNSCC)在内的癌症的细胞存活。然而,这些改变的分子靶向分别产生令人失望的结果。在我们的研究中,我们检查了一个假设,即涉及NF-κB,STAT3和p53的信号网络中的改变可调节促凋亡BAX和抗凋亡BCL-XL蛋白的表达,并促进HNSCC的细胞存活。我们发现NF-κB和STAT3被共同激活,并与细胞因子刺激或siRNA敲低一起调节BAX / BCL-XL。在表达低wt p53的HNSCC细胞系中,比那些过表达mt p53蛋白的细胞更大的调节作用表明,降低的p53表达可能增强NF-κB,STAT3和BCL-XL的激活。 wt p53的重新表达抑制了NF-κB和STAT3核结合活性以及BCL-XL的表达,同时诱导了p21和BAX。与单独调节这些转录因子相比,p53的过度表达与NF-κB或STAT3的抑制相比,导致BAX / BCL-XL比和细胞凋亡的增加更大。相反,NF-κB或STAT3诱导的细胞因子降低了BAX / BCL-XL比。因此,涉及NF-κB和STAT3信号共激活的网络,通过p53失活或突变进行差异修饰,可促进HNSCC中BAX / BCL-XL表达的改变和细胞存活。抑制NF-κB和STAT3的信号激活以及p53的重新表达可能是恢复BAX / BCL-XL调节和HNSCC细胞毒性治疗的最有效策略。

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