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The Inherent Asymmetry of DNA Replication
Annual Review of Cell and Developmental Biology ( IF 11.3 ) Pub Date : 2017-10-06 00:00:00 , DOI: 10.1146/annurev-cellbio-100616-060447
Jonathan Snedeker 1 , Matthew Wooten 1 , Xin Chen 1
Affiliation  

Semiconservative DNA replication has provided an elegant solution to the fundamental problem of how life is able to proliferate in a way that allows cells, organisms, and populations to survive and replicate many times over. Somewhat lost, however, in our admiration for this mechanism is an appreciation for the asymmetries that occur in the process of DNA replication. As we discuss in this review, these asymmetries arise as a consequence of the structure of the DNA molecule and the enzymatic mechanism of DNA synthesis. Increasing evidence suggests that asymmetries in DNA replication are able to play a central role in the processes of adaptation and evolution by shaping the mutagenic landscape of cells. Additionally, in eukaryotes, recent work has demonstrated that the inherent asymmetries in DNA replication may play an important role in the process of chromatin replication. As chromatin plays an essential role in defining cell identity, asymmetries generated during the process of DNA replication may play critical roles in cell fate decisions related to patterning and development.

中文翻译:


DNA复制的固有不对称性

半保守的DNA复制已经为基本问题提供了绝妙的解决方案,即生命如何以允许细胞,生物体和种群存活并复制多次的方式增殖。然而,我们对这种机制的钦佩有些失落,是对DNA复制过程中出现的不对称性的赞赏。正如我们在这篇综述中所讨论的那样,这些不对称性是由于DNA分子的结构和DNA合成的酶促机制而产生的。越来越多的证据表明,DNA复制中的不对称能够通过塑造细胞的致突变性而在适应和进化过程中发挥核心作用。此外,在真核生物中 最近的工作表明,DNA复制中固有的不对称性可能在染色质复制过程中起重要作用。由于染色质在定义细胞身份中起着至关重要的作用,因此在DNA复制过程中产生的不对称性可能在与模式和发育相关的细胞命运决策中起关键作用。

更新日期:2017-10-06
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