关于 NEIL2 对碱基缺失位点偏好性的结构和生化研究

Structural and biochemical insights into NEIL2's preference for abasic sites.

机构信息

Department of Microbiology and Molecular Genetics, University of Vermont, Stafford Hall, 95 Carrigan Drive, Burlington, VT 05405, USA.

Department of Chemistry and Graduate Program in Chemistry and Chemical Biology, University of California Davis, Davis, CA 95616, USA.

出版信息

Nucleic Acids Res. 2023 Dec 11;51(22):12508-12521. doi: 10.1093/nar/gkad1075.

Abstract

Cellular DNA is subject to damage from a multitude of sources and repair or bypass of sites of damage utilize an array of context or cell cycle dependent systems. The recognition and removal of oxidatively damaged bases is the task of DNA glycosylases from the base excision repair pathway utilizing two structural families that excise base lesions in a wide range of DNA contexts including duplex, single-stranded and bubble structures arising during transcription. The mammalian NEIL2 glycosylase of the Fpg/Nei family excises lesions from each of these DNA contexts favoring the latter two with a preference for oxidized cytosine products and abasic sites. We have determined the first liganded crystal structure of mammalian NEIL2 in complex with an abasic site analog containing DNA duplex at 2.08 Å resolution. Comparison to the unliganded structure revealed a large interdomain conformational shift upon binding the DNA substrate accompanied by local conformational changes in the C-terminal domain zinc finger and N-terminal domain void-filling loop necessary to position the enzyme on the DNA. The detailed biochemical analysis of NEIL2 with an array of oxidized base lesions indicates a significant preference for its lyase activity likely to be paramount when interpreting the biological consequences of variants.

摘要

细胞 DNA 容易受到多种来源的损伤,而损伤部位的修复或绕过则利用了一系列依赖上下文或细胞周期的系统。碱基切除修复途径中的 DNA 糖苷酶识别和去除氧化损伤碱基,该途径利用了两种结构家族,能够在包括双链、单链和转录过程中产生的泡状结构在内的广泛 DNA 背景下切除碱基损伤。哺乳动物 Fpg/Nei 家族的 NEIL2 糖苷酶从这些 DNA 背景中切除损伤,对后两者有偏好,对氧化胞嘧啶产物和无碱基位点有偏好。我们已经确定了哺乳动物 NEIL2 与含有 DNA 双链的无碱基位点类似物结合的第一个配体结合晶体结构,分辨率为 2.08Å。与未配体结构的比较表明,在结合 DNA 底物时会发生大的结构域间构象移动,伴随着 C 末端结构域锌指和 N 末端结构域填补空缺环的局部构象变化,这对于将酶定位在 DNA 上是必要的。对一系列氧化碱基损伤的详细生化分析表明,NEIL2 对其裂解酶活性有显著偏好,这在解释变体的生物学后果时可能至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2277/10711445/0e5cc4170676/gkad1075figgra1.jpg

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