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首页> 外文期刊>The Journal of investigative dermatology. >Oncogene-induced senescence does not require the p16(INK4a) or p14ARF melanoma tumor suppressors.
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Oncogene-induced senescence does not require the p16(INK4a) or p14ARF melanoma tumor suppressors.

机译:癌基因诱导的衰老不需要p16(INK4a)或p14ARF黑色素瘤肿瘤抑制因子。

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摘要

Oncogene-induced senescence is considered to act as a potent barrier to cell transformation, and has been seen in vivo during the early stages of tumor development. Human nevus cells frequently express oncogenic N-RAS or B-RAF, and are thought to be permanently growth arrested. Many studies have suggested that the p16(INK4a) and, to a lesser extent, the p14ARF tumor suppressor proteins act as critical triggers of oncogene-induced senescence in nevi, and thus these proteins represent major inhibitors of progression to melanoma. There have also been reports, however, showing that p16(INK4a) and/or p14ARF is not sufficient to execute the oncogene-induced senescence program. In this study, we examined the impact of melanoma-associated N-RAS(Q61K) on melanocyte senescence and utilized RNA-interference vectors to directly assess the individual contribution of human p14ARF and p16(INK4a) genes to the N-RAS-induced senescence program. We formally show that cultured human melanocytes can initiate an effective oncogene-mediated senescence program in the absence of INK4a/ARF-encoded proteins. Our data are consistent with observations showing that senescent nevus cells do not always express p16(INK4a), and highlight the need to thoroughly explore INK4a/ARF-independent molecular pathways of senescence in human melanocytes.
机译:癌基因诱导的衰老被认为是细胞转化的有效屏障,并且已在肿瘤发展的早期阶段在体内被观察到。人痣细胞经常表达致癌的N-RAS或B-RAF,并被认为是永久性的生长停滞。许多研究表明,p16(INK4a)和p14ARF肿瘤抑制蛋白(在较小程度上)是癌基因诱导的神经衰老的关键诱因,因此这些蛋白代表了发展为黑色素瘤的主要抑制剂。然而,也有报道显示p16(INK4a)和/或p14ARF不足以执行癌基因诱导的衰老程序。在这项研究中,我们研究了黑素瘤相关的N-RAS(Q61K)对黑素细胞衰老的影响,并利用RNA干扰载体直接评估了人类p14ARF和p16(INK4a)基因对N-RAS诱导的衰老的个体贡献程序。我们正式表明,在没有INK4a / ARF编码蛋白的情况下,培养的人黑素细胞可以启动有效的癌基因介导的衰老程序。我们的数据与观察结果一致,该观察结果表明衰老的痣细胞并不总是表达p16(INK4a),并强调需要彻底探索人黑素细胞衰老的INK4a / ARF依赖性衰老分子途径。

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