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NF@kB mediates cisplatin resistance through histone modifications in head and neck squamous cell carcinoma (HNSCC)

机译:NF @ kB通过组蛋白修饰介导头颈部鳞状细胞癌(HNSCC)介导顺铂耐药性

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Cisplatin-based chemotherapy is the standard treatment of choice for head and neck squamous cell carcinoma (HNSCC). The efficiency of platinum-based therapies is directly influenced by the development of tumor resistance. Multiple signaling pathways have been linked to tumor resistance, including activation of nuclear factor kappa B (NF@kB). We explore a novel mechanism by which NF@kB drives HNSCC resistance through histone modifications. Post-translational modification of histones alters chromatin structure, facilitating the binding of nuclear factors that mediate DNA repair, transcription, and other processes. We found that chemoresistant HNSCC cells with active NF@kB signaling respond to chemotherapy by reducing nuclear BRCA1 levels and by promoting histone deacetylation (chromatin compaction). Activation of this molecular signature resulted in impaired DNA damage repair, prolonged accumulation of histone @cH2AX and increased genomic instability. We found that pharmacological induction of histone acetylation using HDAC inhibitors prevented NF@kB-induced cisplatin resistance. Furthermore, silencing NF@kB in HNSCC induced acetylation of tumor histones, resulting in reduced chemoresistance and increased cytotoxicity following cisplatin treatment. Collectively, these findings suggest that epigenetic modifications of HNSCC resulting from NF@kB-induced histone modifications constitute a novel molecular mechanism responsible for chemoresistance in HNSCC. Therefore, targeted inhibition of HDAC may be used as a viable therapeutic strategy for disrupting tumor resistance caused by NF@kB.
机译:基于顺铂的化学疗法是头颈鳞状细胞癌(HNSCC)的标准治疗选择。铂类疗法的效率直接受到肿瘤抵抗力发展的影响。多种信号通路已与肿瘤抗性相关,包括核因子κB(NF @ kB)的激活。我们探索了一种新的机制,NF @ kB通过组蛋白修饰驱动HNSCC抗性。组蛋白的翻译后修饰改变了染色质结构,促进了介导DNA修复,转录和其他过程的核因子的结合。我们发现具有活性NF @ kB信号传导的化学抗性HNSCC细胞通过降低核BRCA1水平和促进组蛋白脱乙酰化(染色质紧实)来响应化学疗法。该分子标记的激活导致受损的DNA损伤修复,组蛋白@ cH2AX的积累时间延长和基因组不稳定。我们发现,使用HDAC抑制剂药理学诱导组蛋白乙酰化可防止NF @ kB诱导的顺铂耐药性。此外,在HNSCC中沉默NF @ kB会诱导肿瘤组蛋白乙酰化,导致顺铂治疗后降低的化学抗药性和增加的细胞毒性。总的来说,这些发现表明由NF @ kB诱导的组蛋白修饰引起的HNSCC的表观遗传修饰构成了负责HNSCC化学抗性的新分子机制。因此,靶向抑制HDAC可用作破坏NF @ kB引起的肿瘤耐药性的可行治疗策略。

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