Department of Microbiology and Molecular Genetics, University of Vermont, Burlington, VT 05405, USA.
Nucleic Acids Res. 2021 Dec 16;49(22):13165-13178. doi: 10.1093/nar/gkab1162.
Base excision repair (BER) is the main pathway protecting cells from the continuous damage to DNA inflicted by reactive oxygen species. BER is initiated by DNA glycosylases, each of which repairs a particular class of base damage. NTHL1, a bifunctional DNA glycosylase, possesses both glycolytic and β-lytic activities with a preference for oxidized pyrimidine substrates. Defects in human NTHL1 drive a class of polyposis colorectal cancer. We report the first X-ray crystal structure of hNTHL1, revealing an open conformation not previously observed in the bacterial orthologs. In this conformation, the six-helical barrel domain comprising the helix-hairpin-helix (HhH) DNA binding motif is tipped away from the iron sulphur cluster-containing domain, requiring a conformational change to assemble a catalytic site upon DNA binding. We found that the flexibility of hNTHL1 and its ability to adopt an open configuration can be attributed to an interdomain linker. Swapping the human linker sequence for that of Escherichia coli yielded a protein chimera that crystallized in a closed conformation and had a reduced activity on lesion-containing DNA. This large scale interdomain rearrangement during catalysis is unprecedented for a HhH superfamily DNA glycosylase and provides important insight into the molecular mechanism of hNTHL1.
碱基切除修复 (BER) 是细胞保护自身免受活性氧持续破坏 DNA 的主要途径。BER 由 DNA 糖苷酶起始,每种酶修复特定类型的碱基损伤。NTHL1 是一种具有双功能的 DNA 糖苷酶,具有糖酵解和β裂解活性,对氧化嘧啶底物具有偏好性。人类 NTHL1 的缺陷会导致一类结直肠癌。我们报告了 hNTHL1 的第一个 X 射线晶体结构,揭示了一种以前在细菌同源物中未观察到的开放构象。在这种构象中,由螺旋-发夹-螺旋 (HhH) DNA 结合基序组成的六螺旋桶结构域远离含铁硫簇的结构域,需要在 DNA 结合时发生构象变化以组装催化位点。我们发现 hNTHL1 的灵活性及其能够采用开放构象的能力归因于结构域间连接。将人源连接序列替换为大肠杆菌的序列,得到的蛋白嵌合体在结晶时处于封闭构象,并且对含损伤的 DNA 的活性降低。这种在催化过程中大规模的结构域间重排对于 HhH 超家族 DNA 糖苷酶来说是前所未有的,为 hNTHL1 的分子机制提供了重要的见解。