【2h】

Back to the Origin

机译:回到原点

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摘要

In bacteria, replication is a carefully orchestrated event that unfolds the same way for each bacterium and each cell division. The process of DNA replication in bacteria optimizes cell growth and coordinates high levels of simultaneous replication and transcription. In metazoans, the organization of replication is more enigmatic. The lack of a specific sequence that defines origins of replication has, until recently, severely limited our ability to define the organizing principles of DNA replication. This question is of particular importance as emerging data suggest that replication stress is an important contributor to inherited genetic damage and the genomic instability in tumors. We consider here the replication program in several different organisms including recent genome-wide analyses of replication origins in humans. We review recent studies on the role of cytosine methylation in replication origins, the role of transcriptional looping and gene gating in DNA replication, and the role of chromatin’s 3-dimensional structure in DNA replication. We use these new findings to consider several questions surrounding DNA replication in metazoans: How are origins selected? What is the relationship between replication and transcription? How do checkpoints inhibit origin firing? Why are there early and late firing origins? We then discuss whether oncogenes promote cancer through a role in DNA replication and whether errors in DNA replication are important contributors to the genomic alterations and gene fusion events observed in cancer. We conclude with some important areas for future experimentation.
机译:在细菌中,复制是精心策划的事件,对每种细菌和每种细胞分裂都以相同的方式展开。细菌中DNA复制的过程可优化细胞生长并协调高水平的同时复制和转录。在后生动物中,复制的组织更加神秘。直到最近,由于缺乏定义复制起点的特定序列,严重限制了我们定义DNA复制组织原理的能力。这个问题特别重要,因为新出现的数据表明复制压力是导致遗传遗传损伤和肿瘤基因组不稳定的重要因素。我们在这里考虑在几种不同生物中的复制程序,包括最近对人类复制起源进行全基因组分析。我们回顾了有关胞嘧啶甲基化在复制起点中的作用,转录环和基因门控在DNA复制中的作用以及染色质3维结构在DNA复制中的作用的最新研究。我们使用这些新发现来考虑围绕后生动物中DNA复制的几个问题:如何选择起源?复制和转录之间有什么关系?检查站如何抑制原点射击?为什么会有早期和晚期射击起源?然后,我们讨论了癌基因是否通过在DNA复制中的作用来促进癌症,以及DNA复制中的错误是否是导致癌症中观察到的基因组改变和基因融合事件的重要因素。我们总结了一些重要的方面,供以后进行实验。

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