Mitchell Cancer Institute, University of South Alabama, Mobile, AL 36604, USA; Department of Pharmacology, College of Medicine, University of South Alabama, Mobile, AL 36688, USA.
Mitchell Cancer Institute, University of South Alabama, Mobile, AL 36604, USA; Department of Biochemistry and Molecular Biology, College of Medicine, University of South Alabama, Mobile, AL 36688, USA.
DNA Repair (Amst). 2023 Mar;123:103452. doi: 10.1016/j.dnarep.2023.103452. Epub 2023 Jan 20.
DNA Polymerase β (Polβ) performs two critical enzymatic steps during base excision repair (BER) - gap filling (nucleotidyl transferase activity) and gap tailoring (dRP lyase activity). X-ray repair cross complementing 1 (XRCC1) facilitates the recruitment of Polβ to sites of DNA damage through an evolutionarily conserved Polβ/XRCC1 interaction interface, the V303 loop. While previous work describes the importance of the Polβ/XRCC1 interaction for human Polβ protein stability and recruitment to sites of DNA damage, the impact of disrupting the Polβ/XRCC1 interface on animal viability, physiology, and fertility is unknown. Here, we characterized the effect of disrupting Polβ/XRCC1 heterodimerization in mice and mouse cells by complimentary approaches. First, we demonstrate, via laser micro-irradiation, that mouse Polβ amino acid residues L301 and V303 are critical to facilitating Polβ recruitment to sites of DNA damage. Next, we solved the crystal structures of mouse wild type Polβ and a mutant protein harboring alterations in residues L301 and V303 (L301R/V303R). Our structural analyses suggest that Polβ amino acid residue V303 plays a role in maintaining an interaction with the oxidized form of XRCC1. Finally, we created CRISPR/Cas9-modified Polb mice with homozygous L301R/V303R mutations (Polb) that are fertile yet exhibit 15% reduced body weight at 17 weeks of age, as compared to heterozygous mice. Fibroblasts derived from Polb mice demonstrate that mutation of mouse Polβ's XRCC1 interaction domain leads to an ∼85% decrease in Polβ protein levels. In all, these studies are consistent with a role for the oxidized form of XRCC1 in providing stability to the Polβ protein through Polβ/XRCC1 heterodimer formation.
DNA 聚合酶β(Polβ)在碱基切除修复(BER)过程中执行两个关键的酶促步骤 - 缺口填充(核苷酸转移酶活性)和缺口修饰(dRP 裂解酶活性)。X 射线修复交叉互补蛋白 1(XRCC1)通过进化上保守的 Polβ/XRCC1 相互作用界面(V303 环)促进 Polβ 招募到 DNA 损伤部位。虽然之前的工作描述了 Polβ/XRCC1 相互作用对于人 Polβ 蛋白稳定性和 DNA 损伤部位招募的重要性,但破坏 Polβ/XRCC1 界面对动物存活、生理和生育能力的影响尚不清楚。在这里,我们通过互补方法描述了破坏 Polβ/XRCC1 异二聚体在小鼠和小鼠细胞中的作用。首先,我们通过激光微照射证明,小鼠 Polβ 的氨基酸残基 L301 和 V303 对于促进 Polβ 招募到 DNA 损伤部位至关重要。接下来,我们解析了野生型小鼠 Polβ 和突变蛋白(L301R/V303R)的晶体结构。我们的结构分析表明,Polβ 氨基酸残基 V303 在维持与氧化形式的 XRCC1 的相互作用中起作用。最后,我们创建了具有 L301R/V303R 突变(Polb)的同源纯合 Polb 小鼠,这些小鼠具有生育能力,但在 17 周龄时体重减轻 15%,与杂合小鼠相比。源自 Polb 小鼠的成纤维细胞表明,突变小鼠 Polβ 的 XRCC1 相互作用域导致 Polβ 蛋白水平降低约 85%。总之,这些研究一致表明,氧化形式的 XRCC1 通过 Polβ/XRCC1 异二聚体形成提供 Polβ 蛋白稳定性。
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