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人类PrimPol进行跨损伤DNA合成的替代解决方案和新情况。

Alternative solutions and new scenarios for translesion DNA synthesis by human PrimPol.

作者信息

Martínez-Jiménez María I, García-Gómez Sara, Bebenek Katarzyna, Sastre-Moreno Guillermo, Calvo Patricia A, Díaz-Talavera Alberto, Kunkel Thomas A, Blanco Luis

机构信息

Centro de Biología Molecular Severo Ochoa (CSIC-UAM), Madrid 28049, Spain.

Genome Integrity and Structural Biology Laboratory, National Institutes of Health, Research Triangle Park, NC 27709, United States.

出版信息

DNA Repair (Amst). 2015 May;29:127-38. doi: 10.1016/j.dnarep.2015.02.013. Epub 2015 Feb 23.

Abstract

PrimPol is a recently described DNA polymerase that has the virtue of initiating DNA synthesis. In addition of being a sensu stricto DNA primase, PrimPol's polymerase activity has a large capacity to tolerate different kind of lesions. The different strategies used by PrimPol for DNA damage tolerance are based on its capacity to "read" certain lesions, to skip unreadable lesions, and as an ultimate solution, to restart DNA synthesis beyond the lesion thus acting as a TLS primase. This lesion bypass potential, revised in this article, is strengthened by the preferential use of moderate concentrations of manganese ions as the preferred metal activator. We show here that PrimPol is able to extend RNA primers with ribonucleotides, even when bypassing 8oxoG lesions, suggesting a potential new scenario for PrimPol as a TLS polymerase assisting transcription. We also show that PrimPol displays a high degree of versatility to accept or induce distortions of both primer and template strands, creating alternative alignments based on microhomology that would serve to skip unreadable lesions and to connect separate strands. In good agreement, PrimPol is highly prone to generate indels at short nucleotide repeats. Finally, an evolutionary view of the relationship between translesion synthesis and primase functions is briefly discussed.

摘要

PrimPol是一种最近被描述的DNA聚合酶,具有起始DNA合成的优点。除了是一种严格意义上的DNA引发酶外,PrimPol的聚合酶活性对不同类型的损伤具有很大的耐受性。PrimPol用于DNA损伤耐受的不同策略基于其“读取”某些损伤、跳过不可读损伤的能力,以及作为最终解决方案,在损伤位点之外重新启动DNA合成从而充当跨损伤合成(TLS)引发酶的能力。本文修订的这种损伤绕过潜力,因优先使用中等浓度的锰离子作为首选金属激活剂而得到增强。我们在此表明,即使绕过8-氧代鸟嘌呤(8oxoG)损伤,PrimPol也能够用核糖核苷酸延伸RNA引物,这表明PrimPol作为协助转录的TLS聚合酶存在一种潜在的新情况。我们还表明,PrimPol在接受或诱导引物和模板链的扭曲方面表现出高度的通用性,基于微同源性创建替代排列,用于跳过不可读损伤并连接分开的链。与此一致的是,PrimPol在短核苷酸重复序列处极易产生插入缺失。最后,简要讨论了跨损伤合成与引发酶功能之间关系的进化观点。

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