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哺乳动物中 DNA 复制动力学的表观遗传控制。

Epigenetic control of DNA replication dynamics in mammals.

机构信息

Department of Biology, Technische Universität Darmstadt, Germany.

出版信息

Nucleus. 2011 Sep-Oct;2(5):370-82. doi: 10.4161/nucl.2.5.17861. Epub 2011 Sep 1.

Abstract

Every time a cell divides it must ensure that its genetic information is accurately duplicated and dis-tributed equally to the two daughter cells. This fundamental biological process is conserved through-out all kingdoms of life and relies on the correct and complete duplication of the DNA before a cell can divide and give rise to other cells or to multicellular organisms. Any mistakes in this process can result in genetic mutations or karyotype aberrations, which may lead to disease or even death. Whereas in prokaryotes the entire genome is replicated from a single origin, the increased genome size and complexity in mammals requires the spatio-temporal coordination of thousands of replica-tion origins. Furthermore, this spatio-temporal order of genome replication changes throughout de-velopment and cellular differentiation. Here we present and discuss current knowledge on the con-trol of DNA replication dynamics in mammals and the role of chromatin modifications in this basic biological process.

摘要

每次细胞分裂时,它必须确保其遗传信息被准确复制,并平均分配到两个子细胞中。这个基本的生物学过程在生命的各个领域都得到了保守,并且依赖于在细胞分裂并产生其他细胞或多细胞生物之前,DNA 的正确和完整复制。这个过程中的任何错误都可能导致基因突变或染色体异常,这可能导致疾病甚至死亡。虽然在原核生物中,整个基因组是从一个单一的起点复制的,但是哺乳动物中基因组大小和复杂性的增加需要数千个复制起点的时空协调。此外,基因组复制的时空顺序在发育和细胞分化过程中会发生变化。在这里,我们介绍并讨论了当前关于哺乳动物 DNA 复制动力学的控制以及染色质修饰在这个基本生物学过程中的作用的知识。

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