Mouse models to explore the biological and organismic role of DNA polymerase beta

IF 2.3 4区 医学 Q3 ENVIRONMENTAL SCIENCES Environmental and Molecular Mutagenesis Pub Date : 2024-04-15 DOI:10.1002/em.22593
Robert W. Sobol
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Abstract

Gene knock-out (KO) mouse models for DNA polymerase beta (Polβ) revealed that loss of Polβ leads to neonatal lethality, highlighting the critical organismic role for this DNA polymerase. While biochemical analysis and gene KO cell lines have confirmed its biochemical role in base excision repair and in TET-mediated demethylation, more long-lived mouse models continue to be developed to further define its organismic role. The Polb-KO mouse was the first of the Cre-mediated tissue-specific KO mouse models. This technology was exploited to investigate roles for Polβ in V(D)J recombination (variable-diversity-joining rearrangement), DNA demethylation, gene complementation, SPO11-induced DNA double-strand break repair, germ cell genome stability, as well as neuronal differentiation, susceptibility to genotoxin-induced DNA damage, and cancer onset. The revolution in knock-in (KI) mouse models was made possible by CRISPR/cas9-mediated gene editing directly in C57BL/6 zygotes. This technology has helped identify phenotypes associated with germline or somatic mutants of Polβ. Such KI mouse models have helped uncover the importance of key Polβ active site residues or specific Polβ enzyme activities, such as the PolbY265C mouse that develops lupus symptoms. More recently, we have used this KI technology to mutate the Polb gene with two codon changes, yielding the PolbL301R/V303R mouse. In this KI mouse model, the expressed Polβ protein cannot bind to its obligate heterodimer partner, Xrcc1. Although the expressed mutant Polβ protein is proteolytically unstable and defective in recruitment to sites of DNA damage, the homozygous PolbL301R/V303R mouse is viable and fertile, yet small in stature. We expect that this and additional targeted mouse models under development are poised to reveal new biological and organismic roles for Polβ.

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探索 DNA 聚合酶 beta 在生物和有机体中作用的小鼠模型
DNA聚合酶β(Polβ)的基因敲除(KO)小鼠模型显示,Polβ的缺失会导致新生儿死亡,这突显了这种DNA聚合酶的关键生物作用。生化分析和基因 KO 细胞系证实了它在碱基切除修复和 TET 介导的去甲基化过程中的生化作用,但人们仍在继续开发寿命更长的小鼠模型,以进一步明确它在机体中的作用。Polb-KO小鼠是第一种Cre介导的组织特异性KO小鼠模型。人们利用这项技术研究了 Polβ 在 V(D)J 重组(可变多样性连接重排)、DNA 去甲基化、基因互补、SPO11 诱导的 DNA 双链断裂修复、生殖细胞基因组稳定性以及神经元分化、对基因毒素诱导的 DNA 损伤的易感性和癌症发病中的作用。CRISPR/cas9直接在C57BL/6基因组中介导基因编辑,使基因敲入(KI)小鼠模型的革命成为可能。这项技术有助于鉴定与 Polβ 胚系或体细胞突变体相关的表型。这种 KI 小鼠模型有助于发现关键 Polβ 活性位点残基或特定 Polβ 酶活性的重要性,例如出现狼疮症状的 PolbY265C 小鼠。最近,我们利用这种 KI 技术使 Polb 基因发生了两个密码子的突变,产生了 PolbL301R/V303R 小鼠。在这种 KI 小鼠模型中,表达的 Polβ 蛋白不能与其必须的异源二聚体伙伴 Xrcc1 结合。虽然表达的突变 Polβ 蛋白在蛋白水解方面不稳定,而且在 DNA 损伤位点的招募方面也有缺陷,但同源的 PolbL301R/V303R 小鼠仍能存活和生育,只是身材矮小。我们期待这种小鼠模型和其他正在开发的靶向小鼠模型能够揭示 Polβ 在生物学和生物体内的新作用。
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来源期刊
CiteScore
5.40
自引率
10.70%
发文量
52
审稿时长
12-24 weeks
期刊介绍: Environmental and Molecular Mutagenesis publishes original research manuscripts, reviews and commentaries on topics related to six general areas, with an emphasis on subject matter most suited for the readership of EMM as outlined below. The journal is intended for investigators in fields such as molecular biology, biochemistry, microbiology, genetics and epigenetics, genomics and epigenomics, cancer research, neurobiology, heritable mutation, radiation biology, toxicology, and molecular & environmental epidemiology.
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