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DNA、RNA 和组蛋白甲基化在衰老和癌症中的作用。

The roles of DNA, RNA and histone methylation in ageing and cancer.

机构信息

Cancer Research Division, Peter MacCallum Cancer Centre, Melbourne, Australia.

Sir Peter MacCallum Department of Oncology, The University of Melbourne, Melbourne, Australia.

出版信息

Nat Rev Mol Cell Biol. 2019 Oct;20(10):573-589. doi: 10.1038/s41580-019-0143-1. Epub 2019 Jul 3.

Abstract

Chromatin is a macromolecular complex predominantly comprising DNA, histone proteins and RNA. The methylation of chromatin components is highly conserved as it helps coordinate the regulation of gene expression, DNA repair and DNA replication. Dynamic changes in chromatin methylation are essential for cell-fate determination and development. Consequently, inherited or acquired mutations in the major factors that regulate the methylation of DNA, RNA and/or histones are commonly observed in developmental disorders, ageing and cancer. This has provided the impetus for the clinical development of epigenetic therapies aimed at resetting the methylation imbalance observed in these disorders. In this Review, we discuss the cellular functions of chromatin methylation and focus on how this fundamental biological process is corrupted in cancer. We discuss methylation-based cancer therapies and provide a perspective on the emerging data from early-phase clinical trial therapies that target regulators of DNA and histone methylation. We also highlight promising therapeutic strategies, including monitoring chromatin methylation for diagnostic purposes and combination epigenetic therapy strategies that may improve immune surveillance in cancer and increase the efficacy of conventional and targeted anticancer drugs.

摘要

染色质是一种主要由 DNA、组蛋白和 RNA 组成的高分子复合物。染色质成分的甲基化高度保守,有助于协调基因表达、DNA 修复和 DNA 复制的调控。染色质甲基化的动态变化对于细胞命运决定和发育至关重要。因此,在发育障碍、衰老和癌症中,通常可以观察到调节 DNA、RNA 和/或组蛋白甲基化的主要因素的遗传或获得性突变。这为旨在重置这些疾病中观察到的甲基化失衡的表观遗传治疗的临床发展提供了动力。在这篇综述中,我们讨论了染色质甲基化的细胞功能,并重点讨论了这一基本生物过程在癌症中的破坏。我们讨论了基于甲基化的癌症治疗方法,并提供了对早期临床试验中靶向 DNA 和组蛋白甲基化调节剂的新兴数据的观点。我们还强调了有前途的治疗策略,包括监测染色质甲基化用于诊断目的以及组合表观遗传治疗策略,这些策略可能改善癌症中的免疫监视并提高常规和靶向抗癌药物的疗效。

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