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Origin DNA Melting—An Essential Process with Divergent Mechanisms

机译:Origin DNA熔解—具有不同机制的基本过程

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摘要

Origin DNA melting is an essential process in the various domains of life. The replication fork helicase unwinds DNA ahead of the replication fork, providing single-stranded DNA templates for the replicative polymerases. The replication fork helicase is a ring shaped-assembly that unwinds DNA by a steric exclusion mechanism in most DNA replication systems. While one strand of DNA passes through the central channel of the helicase ring, the second DNA strand is excluded from the central channel. Thus, the origin, or initiation site for DNA replication, must melt during the initiation of DNA replication to allow for the helicase to surround a single-DNA strand. While this process is largely understood for bacteria and eukaryotic viruses, less is known about how origin DNA is melted at eukaryotic cellular origins. This review describes the current state of knowledge of how genomic DNA is melted at a replication origin in bacteria and eukaryotes. We propose that although the process of origin melting is essential for the various domains of life, the mechanism for origin melting may be quite different among the different DNA replication initiation systems.
机译:Origin DNA融化是生命各个领域中必不可少的过程。复制叉解旋酶在复制叉之前解开DNA,为复制性聚合酶提供单链DNA模板。复制叉解旋酶是一种环状组件,可在大多数DNA复制系统中通过空间排阻机制解开DNA。当一条DNA链通过解旋酶环的中央通道时,第二条DNA链则从中央通道中排除。因此,DNA复制的起点或起始位点必须在DNA复制的起始过程中融化,以使解旋酶包围单条DNA链。尽管对于细菌和真核病毒来说,这一过程已广为人知,但对于如何在真核细胞起源中融化起源DNA却知之甚少。这篇综述描述了基因组DNA如何在细菌和真核生物的复制起点处融化的当前知识状态。我们提出,尽管起源融化的过程对于生命的各个领域都是必不可少的,但是起源融化的机制在不同的DNA复制起始系统之间可能会完全不同。

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