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Timing matters: error-prone gap filling and translesion synthesis in immunoglobulin gene hypermutation

机译:时间问题:免疫球蛋白基因超突变中容易发生错误的缺口填充和转移合成

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摘要

By temporarily deferring the repair of DNA lesions encountered during replication, the bypass of DNA damage is critical to the ability of cells to withstand genomic insults. Damage bypass can be achieved either by recombinational mechanisms that are generally accurate or by a process called translesion synthesis. Translesion synthesis involves replacing the stalled replicative polymerase with one of a number of specialized DNA polymerases whose active sites are able to tolerate a distorted or damaged DNA template. While this property allows the translesion polymerases to synthesize across damaged bases, it does so with the trade-off of an increased mutation rate. The deployment of these enzymes must therefore be carefully regulated. In addition to their important role in general DNA damage tolerance and mutagenesis, the translesion polymerases play a crucial role in converting the products of activation induced deaminase-catalysed cytidine deamination to mutations during immunoglobulin gene somatic hypermutation. In this paper, we specifically consider the control of translesion synthesis in the context of the timing of lesion bypass relative to replication fork progression and arrest at sites of DNA damage. We then examine how recent observations concerning the control of translesion synthesis might help refine our view of the mechanisms of immunoglobulin gene somatic hypermutation.
机译:通过暂时推迟复制过程中遇到的DNA损伤的修复,DNA损伤的旁路对于细胞承受基因组侵袭的能力至关重要。绕过损伤可以通过通常准确的重组机制或通过称为损伤合成的过程来实现。跨病变合成涉及用许多专门的DNA聚合酶之一代替停滞的复制性聚合酶,这些酶的活性位点能够耐受扭曲或损坏的DNA模板。尽管此特性允许跨病变的聚合酶跨受损的碱基合成,但需要权衡增加突变率。因此,必须仔细调节这些酶的部署。除了在一般的DNA损伤耐受性和诱变中起重要作用外,跨病变聚合酶在将激活诱导的脱氨酶催化的胞苷脱氨产物转化为免疫球蛋白基因体细胞超突变的突变中起着至关重要的作用。在本文中,我们特别考虑在病变旁路相对于复制叉进展和DNA损伤位点停滞的时间范围内控制病变的合成。然后,我们检查有关跨病变合成控制的最新观察结果如何有助于完善我们对免疫球蛋白基因体细胞高突变机制的看法。

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