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首页> 外文期刊>American Journal of Cancer Research >Repression of GCN5 expression or activity attenuates c-MYC expression in non-small cell lung cancer
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Repression of GCN5 expression or activity attenuates c-MYC expression in non-small cell lung cancer

机译:GCN5表达或活性的抑制衰减非小细胞肺癌中的C-MYC表达

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摘要

Lung cancer causes the highest mortality in cancer-related deaths. As these cancers often become resistant to existing therapies, definition of novel molecular targets is needed. Epigenetic modifiers may provide such targets. Recent reports suggest that the histone acetyltransferase (HAT) module within the transcriptional coactivator SAGA complex plays a role in cancer, creating a new link between epigenetic regulators and this disease. GCN5 serves as a coactivator for MYC target genes, and here we investigate links between GCN5 and c-MYC in non-small cell lung cancer (NSCLC). Our data indicate that both GCN5 and c-MYC proteins are upregulated in mouse and human NSCLC cells compared to normal lung epithelial cells. This trend is observable only at the protein level, indicating that this upregulation occurs post-transcriptionally. Human NSCLC tissue data provided by The Cancer Genome Atlas (TCGA) indicates that GCN5 and c-MYC expression are positively associated with one another and with the expression of c-MYC target genes. Depletion of GCN5 in NSCLC cells reduces c-MYC expression, cell proliferation, and increases the population of necrotic cells. Similarly, inhibition of the GCN5 catalytic site using a commercially available probe reduces c-MYC expression, cell proliferation, and increases the percentage of cells undergoing apoptosis. Our findings suggest that GCN5 might provide a novel target for inhibition of NSCLC growth and progression.
机译:肺癌导致癌症相关死亡的最高死亡率。由于这些癌症常常对现有疗法造成抗性,因此需要进行新的分子靶标的定义。表观遗传改性剂可以提供这些靶标。最近的报道表明,转录共同膜复合物内的组蛋白乙酰转移酶(帽子)模块在癌症中起作用,在表观遗传调节剂和这种疾病之间产生新的联系。 GCN5用作Myc靶基因的共酰变剂,在这里,我们研究了在非小细胞肺癌(NSCLC)中GCN5和C-MYC之间的链接。我们的数据表明,与正常肺上皮细胞相比,GCN5和C-MYC蛋白在小鼠和人NMSCLC细胞中上调。这种趋势仅在蛋白质水平处可观察到,表明这种上调发生在转录后发生。由癌症基因组Atlas(TCGA)提供的人NMSCLC组织数据表明GCN5和C-MYC表达彼此呈正相关并随着C-MYC靶基因的表达。 NSCLC细胞中GCN5的耗尽降低了C-MYC表达,细胞增殖,并增加了坏死细胞的群体。类似地,使用市售探针抑制GCN5催化位点降低了C-MYC表达,细胞增殖,并增加了正在进行细胞凋亡的细胞的百分比。我们的研究结果表明GCN5可能为抑制NSCLC生长和进展提供一种新的靶标。

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