Department of Genetics and Biochemistry, Clemson University, Clemson, SC, USA.
FEBS J. 2022 Oct;289(20):6420-6434. doi: 10.1111/febs.16533. Epub 2022 Jun 22.
Uracil-DNA glycosylase (UDG) initiates base excision repair (BER) by removing damaged or modified nucleobases during DNA repair or mammalian demethylation. The UDG superfamily consists of at least six families with a variety of catalytic specificities and functions. Deinococcus radiodurans, an extreme radiation resistant bacterium, contains multiple members of UDG enzymes within its genome. The present study reveals that the putative protein, DR0022, is a uracil-DNA glycosylase that requires acidic conditions for its glycosylase activity, which is the first case of such an enzyme within the UDG superfamily. The key residues in the catalytic motifs are investigated by biochemical, enzyme kinetics, and de novo structural prediction, as well as molecular modeling analyses. The structural and catalytic roles of several distinct residues are discussed in light of predicted and modeled DR0022 glycosylase structures. The spontaneous mutation rate analysis performed in a dr0022 deficient D. radiodurans strain indicated that the dr0022 gene plays a role in mutation prevention. Furthermore, survival rate analysis in a dr0022 deficient D. radiodurans strain demonstrated its role in stress resistance, including γ-irradiation. Additionally, the novel acid UDG activity in relationship to its in vivo roles is discussed. This work underscores the functional diversity in the UDG superfamily.
尿嘧啶-DNA 糖基化酶 (UDG) 通过在 DNA 修复或哺乳动物去甲基化过程中去除受损或修饰的核碱基,启动碱基切除修复 (BER)。UDG 超家族至少由六个家族组成,具有多种催化特异性和功能。耐辐射球菌是一种极端耐辐射的细菌,其基因组内含有多种 UDG 酶。本研究揭示了假定的 DR0022 蛋白是一种尿嘧啶-DNA 糖基化酶,其糖基化活性需要酸性条件,这是 UDG 超家族中首例具有这种酶的情况。通过生化、酶动力学和从头结构预测以及分子建模分析研究了催化基序中的关键残基。根据预测和建模的 DR0022 糖基化酶结构,讨论了几个不同残基的结构和催化作用。在 dr0022 缺失的 D. radiodurans 菌株中进行的自发突变率分析表明,dr0022 基因在防止突变中发挥作用。此外,在 dr0022 缺失的 D. radiodurans 菌株中的存活率分析表明,它在包括γ辐射在内的应激抵抗中发挥作用。此外,还讨论了与体内作用相关的新型酸性 UDG 活性。这项工作强调了 UDG 超家族的功能多样性。