首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Curcumin Enhances the Efficacy of Chemotherapy by Tailoring p65NFκB-p300 Cross-talk in Favor of p53-p300 in Breast Cancer
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Curcumin Enhances the Efficacy of Chemotherapy by Tailoring p65NFκB-p300 Cross-talk in Favor of p53-p300 in Breast Cancer

机译:姜黄素通过调整p65NFκB-p300交互作用而有利于乳腺癌中的p53-p300来增强化学疗法的效力

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摘要

Breast cancer cells often develop multiple mechanisms of drug resistance during tumor progression, which is the major reason for the failure of breast cancer therapy. High constitutive activation of NFκB has been found in different cancers, creating an environment conducive for chemotherapeutic resistance. Here we report that doxorubicin-induced SMAR1-dependent transcriptional repression and SMAR1-independent degradation of IkBα resulted in nuclear translocation of p65NFκB and its association with p300 histone acetylase and subsequent transcription of Bcl-2 to impart protective response in drug-resistant cells. Consistently SMAR1-silenced drug-resistant cells exhibited IkBα-mediated inhibition of p65NFκB and induction of p53-dependent apoptosis. Interestingly, curcumin pretreatment of drug-resistant cells alleviated SMAR1-mediated p65NFκB activation and hence restored doxorubicin sensitivity. Under such anti-survival condition, induction of p53-p300 cross-talk enhanced the transcriptional activity of p53 and intrinsic death cascade. Importantly, promyelocyte leukemia-mediated SMAR1 sequestration that relieved the repression of apoptosis-inducing genes was indispensable for such chemo-sensitizing ability of curcumin. A simultaneous decrease in drug-induced systemic toxicity by curcumin might also have enhanced the efficacy of doxorubicin by improving the intrinsic defense machineries of the tumor-bearer. Overall, the findings of this preclinical study clearly demonstrate the effectiveness of curcumin to combat doxorubicin-resistance. We, therefore, suggest curcumin as a potent chemo-sensitizer to improve the therapeutic index of this widely used anti-cancer drug. Taken together, these results suggest that curcumin can be developed into an adjuvant chemotherapeutic drug.
机译:乳腺癌细胞通常在肿瘤进展过程中发展出多种耐药机制,这是乳腺癌治疗失败的主要原因。已经在不同的癌症中发现了NFκB的高组成型活化,从而创造了有利于化学疗法抗性的环境。在这里,我们报道阿霉素诱导的IkBα的SMAR1依赖性转录抑制和SMAR1依赖性降解导致p65NFκB的核易位及其与p300组蛋白乙酰化酶的结合以及随后的Bcl-2转录,从而在耐药细胞中赋予保护性应答。一致地,SMAR1沉默的耐药细胞表现出IkBα介导的对p65NFκB的抑制和对p53依赖性细胞凋亡的诱导。有趣的是,姜黄素对耐药细胞的预处理减轻了SMAR1介导的p65NFκB的活化,因此恢复了阿霉素的敏感性。在这种抗存活条件下,p53-p300串扰的诱导增强了p53的转录活性和内在的死亡级联。重要的是,减轻姜黄素的这种化学致敏能力,减轻髓样细胞白血病介导的SMAR1螯合是减轻凋亡诱导基因的抑制所必需的。姜黄素同时降低药物引起的全身毒性,可能还可以通过改善肿瘤携带者的内在防御机制来增强阿霉素的功效。总体而言,这项临床前研究的结果清楚地表明了姜黄素对抗阿霉素抵抗的有效性。因此,我们建议姜黄素作为有效的化学增敏剂,以改善这种广泛使用的抗癌药的治疗指数。综上所述,这些结果表明姜黄素可以发展为辅助化疗药物。

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