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首页> 外文期刊>Cancer biology & therapy >Understanding the consequences of epigenetic mechanisms and its effects on transcription in health and disease.
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Understanding the consequences of epigenetic mechanisms and its effects on transcription in health and disease.

机译:了解表观遗传机制的后果及其对健康与疾病转录的影响。

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Over the course of thirty-five years of research into the chromosome we are confronted with a number of general conclusions central to chromatin biology, perhaps most pertinent of these is that organization of higher order nucleosome structures play a fundamental role in DNA behavior. Folding and packaging of DNA is linked with a number of processes ranging from transcriptional regulation, genome stability, chromosome segregation, including replication and repair. Intrinsic to nuclear function is chromatin structure and the relationship with epigenetic modification. While we are aware that genetic and epigenetic changes can influence tumorigenesis, it is still unclear what protein components are specified on chromatin or the molecular events that underlie the link between chromosomes and cancer. In recent years, our understanding of DNA methylation with cancer development has revealed some surprising findings with particular emphasis on the antithetical character of hypo- and hyper- methylation of DNA.The molecular mechanism by which methylation is responsible for increased cancer risk has received widespread attention and is relavent to our understanding of genetic stability. The biological significance of other epigenetic modifications such as histone tail changes and active chromatin remodeling are also a major driving force in chromosome research in cancer. In light of recent advances in the understanding of epigenetic changes in disease we have organized a focused review series and discuss the significance of Epigenetics in Normal Control and Deregulation in Cancer. Authors from divergent fields of study have contributed articles that examine chromatin dynamics in cancer, bringing together research interests from a wide variety of fields. In this vein, we discuss the consequences of deregulating epigenetic mechanisms with a viewpoint on transcriptional control, chromatin function and human disease.
机译:在三十五年的研究进入染色体中,我们面临着许多一般结论的染色质生物学,也许大多数相关的是,高阶核心结构组织在DNA行为中起着基本作用。 DNA的折叠和包装与多种方法连接,范围从转录调节,基因组稳定性,染色体隔离,包括复制和修复。核函数的内在是染色质结构和与表观遗传改性的关系。虽然我们意识到遗传和表观遗传的变化可以影响肿瘤发生,但仍然尚不清楚染色质或分子事件在染色体和癌症之间的链接指定的蛋白质成分。近年来,我们对DNA甲基化与癌症发育的理解揭示了一些令人惊讶的发现,特别强调DNA的低甲基化的抗静电特征。甲基化对癌症风险增加的分子机制受到广泛的关注并被捕获到我们对遗传稳定的理解。其他表观遗传修饰的生物学意义,如组蛋白尾部变化和活性染色质重塑也是癌症染色体研究中的主要驱动力。据近期对疾病的表观遗传变化的理解进展,我们组织了一个集中的审查系列,并讨论了表观遗传学在癌症中正常对照和放松管制的重要性。来自不同的研究领域的作者有助于检查癌症染色质动力学的文章,从各种各样的领域带来研究兴趣。在这种静脉中,我们讨论了对题析控制,染色质功能和人类疾病的观点来讨论放松表观遗传机制的后果。

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