癌症中超增强子重编程和激活的病因学。

IF 4.2 2区 生物学 Q1 GENETICS & HEREDITY
Royce W Zhou, Ramon E Parsons
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引用次数: 0

摘要

超级增强子是一种大而密集的增强子,可以调节对细胞身份至关重要的基因。肿瘤的发生伴随着超增强因子的变化。这些异常的超级增强子通常形成激活原癌基因,或癌细胞所依赖的其他基因,这些基因启动肿瘤发生,促进肿瘤增殖,并增加癌细胞在肿瘤微环境中生存的适应性。其中包括在癌症环境中公认的主要增殖调节因子,如转录因子MYC,与正常组织相比,它在癌症中获得的许多超级增强子的控制下。这篇综述将涵盖癌症中这些超级增强子变化的扩展细胞内禀和细胞外禀病因学,包括体细胞突变、拷贝数变异、融合事件、染色体外DNA和三维染色质结构,以及炎症、细胞外信号和肿瘤微环境激活的病因学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Etiology of super-enhancer reprogramming and activation in cancer.

Etiology of super-enhancer reprogramming and activation in cancer.

Etiology of super-enhancer reprogramming and activation in cancer.

Etiology of super-enhancer reprogramming and activation in cancer.

Super-enhancers are large, densely concentrated swaths of enhancers that regulate genes critical for cell identity. Tumorigenesis is accompanied by changes in the super-enhancer landscape. These aberrant super-enhancers commonly form to activate proto-oncogenes, or other genes upon which cancer cells depend, that initiate tumorigenesis, promote tumor proliferation, and increase the fitness of cancer cells to survive in the tumor microenvironment. These include well-recognized master regulators of proliferation in the setting of cancer, such as the transcription factor MYC which is under the control of numerous super-enhancers gained in cancer compared to normal tissues. This Review will cover the expanding cell-intrinsic and cell-extrinsic etiology of these super-enhancer changes in cancer, including somatic mutations, copy number variation, fusion events, extrachromosomal DNA, and 3D chromatin architecture, as well as those activated by inflammation, extra-cellular signaling, and the tumor microenvironment.

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来源期刊
Epigenetics & Chromatin
Epigenetics & Chromatin GENETICS & HEREDITY-
CiteScore
7.00
自引率
0.00%
发文量
35
审稿时长
1 months
期刊介绍: Epigenetics & Chromatin is a peer-reviewed, open access, online journal that publishes research, and reviews, providing novel insights into epigenetic inheritance and chromatin-based interactions. The journal aims to understand how gene and chromosomal elements are regulated and their activities maintained during processes such as cell division, differentiation and environmental alteration.
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