Department of Chemistry, Vanderbilt University Center for Structural Biology, and the Vanderbilt-Ingram Cancer Center, Vanderbilt University, Nashville, Tennessee 37235, United States.
Department of Biochemistry, Vanderbilt University, Nashville, Tennessee 37232, United States.
Biochemistry. 2021 Jan 12;60(1):41-52. doi: 10.1021/acs.biochem.0c00596. Epub 2020 Dec 31.
Abasic (AP) sites are one of the most common forms of DNA damage. The deoxyribose ring of AP sites undergoes anomerization between α and β configurations, via an electrophilic aldehyde intermediate. In sequences where an adenine residue is located on the opposing strand and offset 1 nt to the 3' side of the AP site, the nucleophilic -dA amino group can react with the AP aldehyde residue to form an interstrand cross-link (ICL). Here, we present an experimentally determined structure of the dA-AP ICL by NMR spectroscopy. The ICL was constructed in the oligodeoxynucleotide 5'-d(TATGTCTAAGTTCATCTA)-3':5'-d(TAGATGAACXTAGACATA)-3' (X=AP site), with the dA-AP ICL forming between A and X. The NMR spectra indicated an ordered structure for the cross-linked DNA duplex and afforded detailed spectroscopic resonance assignments. Structural refinement, using molecular dynamics calculations restrained by NOE data (rMD), revealed the structure of the ICL. In the dA-AP ICL, the 2'-deoxyribosyl ring of the AP site was ring-closed and in the β configuration. Juxtapositioning the -dA amino group and the aldehydic C1 of the AP site within bonding distance while simultaneously maintaining two flanking unpaired A and T bases stacked within the DNA is accomplished by the unwinding of the DNA at the ICL. The structural data is discussed in the context of recent studies describing the replication-dependent unhooking of the dA-AP ICL by the base excision repair glycosylase NEIL3.
碱基缺失(AP)位点是最常见的 DNA 损伤形式之一。AP 位点的脱氧核糖环通过亲电醛中间物在α和β构型之间发生差向异构化。在位于互补链上且与 AP 位点偏移 1nt 的腺嘌呤残基的序列中,亲核-dA 氨基基团可以与 AP 醛残基反应形成链间交联(ICL)。在这里,我们通过 NMR 光谱学展示了 dA-AP ICL 的实验确定结构。ICL 是在寡脱氧核苷酸 5'-d(TATGTCTAAGTTCATCTA)-3':5'-d(TAGATGAACXTAGACATA)-3'(X=AP 位点)中构建的,其中 dA-AP ICL 形成于 A 和 X 之间。NMR 光谱表明交联 DNA 双链具有有序结构,并提供了详细的光谱共振分配。使用分子动力学计算(rMD)受 NOE 数据约束的结构精修揭示了 ICL 的结构。在 dA-AP ICL 中,AP 位点的 2'-脱氧核糖环闭环并呈β构型。将-dA 氨基基团和 AP 位点的醛基 C1 并置在键合距离内,同时保持 DNA 内两个相邻的未配对 A 和 T 碱基堆积,这是通过 ICL 处的 DNA 解旋来实现的。结构数据将在描述碱基切除修复糖苷酶 NEIL3 依赖复制的 dA-AP ICL 解钩的最近研究的背景下进行讨论。