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有丝分裂基因标记:维持正常和癌症表型的表观遗传程序。

Mitotic Gene Bookmarking: An Epigenetic Program to Maintain Normal and Cancer Phenotypes.

机构信息

Department of Biochemistry and University of Vermont Cancer Centre, University of Vermont, Burlington Vermont.

Department of Pediatrics, University of Massachusetts Medical School, Worcester, Massachusetts.

出版信息

Mol Cancer Res. 2018 Nov;16(11):1617-1624. doi: 10.1158/1541-7786.MCR-18-0415. Epub 2018 Jul 12.

Abstract

Reconfiguration of nuclear structure and function during mitosis presents a significant challenge to resume the next cell cycle in the progeny cells without compromising structural and functional identity of the cells. Equally important is the requirement for cancer cells to retain the transformed phenotype, that is, unrestricted proliferative potential, suppression of cell phenotype, and activation of oncogenic pathways. Mitotic gene bookmarking retention of key regulatory proteins that include sequence-specific transcription factors, chromatin-modifying factors, and components of RNA Pol (RNAP) I and II regulatory machineries at gene loci on mitotic chromosomes plays key roles in coordinate control of cell phenotype, growth, and proliferation postmitotically. There is growing recognition that three distinct protein types, mechanistically, play obligatory roles in mitotic gene bookmarking: (i) Retention of phenotypic transcription factors on mitotic chromosomes is essential to sustain lineage commitment; (ii) Select chromatin modifiers and posttranslational histone modifications/variants retain competency of mitotic chromatin for gene reactivation as cells exit mitosis; and (iii) Functional components of RNAP I and II transcription complexes (e.g., UBF and TBP, respectively) are retained on genes poised for reactivation immediately following mitosis. Importantly, recent findings have identified oncogenes that are associated with target genes on mitotic chromosomes in cancer cells. The current review proposes that mitotic gene bookmarking is an extensively utilized epigenetic mechanism for stringent control of proliferation and identity in normal cells and hypothesizes that bookmarking plays a pivotal role in maintenance of tumor phenotypes, that is, unrestricted proliferation and compromised control of differentiation. .

摘要

有丝分裂过程中核结构和功能的重排,给子细胞在下一个细胞周期中恢复正常带来了巨大的挑战,同时又不损害细胞的结构和功能特性。同样重要的是,癌细胞需要保留转化表型,即不受限制的增殖潜力、抑制细胞表型和激活致癌途径。有丝分裂基因书签保留了关键调节蛋白,包括序列特异性转录因子、染色质修饰因子和 RNA Pol(RNAP)I 和 II 调节机器的组成部分,在有丝分裂染色体上的基因座上,这些蛋白在协调控制细胞表型、生长和增殖方面发挥着关键作用。越来越多的人认识到,有三种不同的蛋白质类型在有丝分裂基因书签中起着强制性的作用:(i)保留有丝分裂染色体上的表型转录因子对于维持谱系决定至关重要;(ii)选择染色质修饰因子和翻译后组蛋白修饰/变体保留有丝分裂染色质的活性,以促进细胞退出有丝分裂后的基因重新激活;(iii)RNAP I 和 II 转录复合物的功能成分(例如,UBF 和 TBP)分别保留在有丝分裂后立即准备重新激活的基因上。重要的是,最近的发现已经确定了与癌细胞中有丝分裂染色体上靶基因相关的癌基因。本综述提出,有丝分裂基因书签是一种广泛用于严格控制正常细胞增殖和身份的表观遗传机制,并假设书签在维持肿瘤表型方面起着关键作用,即不受限制的增殖和分化控制受损。

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