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癌症病因学的表观遗传学

The epigenetics of cancer etiology.

作者信息

Feinberg Andrew P

机构信息

Epigenetics Unit, Departments of Medicine, Oncology, and Molecular Biology and Genetics, Johns Hopkins University School of Medicine, 1064 Ross, Johns Hopkins Medical School, 720 Rutland Ave., Baltimore, MD 21205, USA.

出版信息

Semin Cancer Biol. 2004 Dec;14(6):427-32. doi: 10.1016/j.semcancer.2004.06.005.

Abstract

Epigenetic dysregulation is central to cancer development and progression. This dysregulation includes hypomethylation leading to oncogene activation and chromosomal instability, hypermethylation and tumor suppressor gene silencing, and chromatin modification acting directly, and cooperatively with methylation changes, to modify gene expression. In addition, disrupted genomic imprinting appears to contribute to colorectal cancer risk, and serves as a gatekeeper in Wilms tumor. A cancer predisposing disorder, Beckwith-Wiedemann syndrome, usually arises from epigenetic errors, solidifying the causal role of epigenetics in cancer. While cancer epigenetics has been reviewed extensively elsewhere, the main focus of this review will be to present the view that epigenetics and genetics are complementary in the area of cancer etiology, the focus of this volume. I propose a hypothesis in which epigenetic alterations contribute to tumor progression, but they also increase the probability that genetic changes, when they occur, will lead to cancer initiation. This hypothesis could contribute to a new understanding of the role of environmental carcinogens that may not be fully explained through a purely genetic view or by tests, such as bacterial mutation frequency, that ignore epigenetic factors.

摘要

表观遗传失调是癌症发生和发展的核心。这种失调包括导致癌基因激活和染色体不稳定的低甲基化、高甲基化和肿瘤抑制基因沉默,以及直接作用并与甲基化变化协同作用以改变基因表达的染色质修饰。此外,基因组印记紊乱似乎会增加患结直肠癌的风险,并在肾母细胞瘤中起关键作用。一种癌症易感疾病,贝克威思-维德曼综合征,通常源于表观遗传错误,这进一步证实了表观遗传学在癌症中的因果作用。虽然癌症表观遗传学在其他地方已有广泛综述,但本综述的主要重点将是提出这样一种观点,即在本卷关注的癌症病因学领域,表观遗传学和遗传学是互补的。我提出一个假说,表观遗传改变有助于肿瘤进展,但它们也增加了遗传变化发生时导致癌症起始的可能性。这一假说可能有助于对环境致癌物作用的新理解,而这可能无法通过纯粹的遗传学观点或忽略表观遗传因素的测试(如细菌突变频率测试)来充分解释。

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