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Epigenetic mechanisms in cancer: push and pull between kneaded erasers and fate writers

机译:癌症的表观遗传机制:橡皮擦和命运作家之间的推拉

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摘要

Research concerning the epigenome over the years has systematically and sequentially shown substantial development and we have moved from global inhibition of modifications of the epigenome toward identification and targeted therapy against tumor-specific epigenetic mechanisms. In accordance with this approach, several drugs with epigenetically modulating activity have received considerable attention and appreciation, and recently emerging scientific evidence is uncovering details of their mode of action. High-throughput technologies have considerably improved our existing understanding of tumor suppressors, oncogenes, and signaling pathways that are key drivers of cancer. In this review, we summarize the general epigenetic mechanisms in cancer, including: the post-translational modification of DNA methyltransferase and its mediated inactivation of Ras association domain family 1 isoform A, Sonic hedgehog signaling, Wnt signaling, Notch signaling, transforming growth factor signaling, and natural products with epigenetic modification ability. Moreover, we introduce the importance of nanomedicine for delivery of natural products with modulating ability to epigenetic machinery in cancer cells. Such in-depth and comprehensive knowledge regarding epigenetic dysregulation will be helpful in the upcoming era of molecular genomic pathology for both detection and treatment of cancer. Epigenetic information will also be helpful when nanotherapy is used for epigenetic modification.
机译:多年来有关表观基因组的研究已系统地和顺序地显示出实质性发展,我们已经从对表观基因组修饰的整体抑制转向识别和靶向针对肿瘤特异性表观遗传机制的疗法。按照这种方法,几种具有表观遗传调控活性的药物受到了广泛的关注和赞赏,并且最近出现的科学证据正在揭示其作用方式的细节。高通量技术极大地提高了我们对肿瘤抑制因子,致癌基因和信号通路的认识,而这些因素是癌症的主要驱动力。在这篇综述中,我们总结了癌症的一般表观遗传机制,包括:DNA甲基转移酶的翻译后修饰及其介导的Ras缔合域家族1亚型A失活,声波刺猬信号,Wnt信号,Notch信号,转化生长因子信号,以及具有表观遗传修饰能力的天然产物。此外,我们介绍了纳米药物对具有调节癌细胞表观遗传机制能力的天然产物的重要性。这种关于表观遗传失调的深入而全面的知识将在即将到来的用于检测和治疗癌症的分子基因组病理学时代中提供帮助。当将纳米疗法用于表观遗传修饰时,表观遗传信息也将有所帮助。

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