Webba da Silva Mateus, Noronha Anne M, Noll David M, Miller Paul S, Colvin O Michael, Gamcsik Michael P
Department of Medicine, Duke University Medical Center, Durham, North Carolina 27710, USA.
Biochemistry. 2002 Dec 24;41(51):15181-8. doi: 10.1021/bi026368l.
The solution structure of an interstrand cross-linked self-complementary oligodeoxynucleotide containing directly opposed alkylated N(4)C-ethyl-N(4)C cytosine bases was determined by molecular dynamics calculations guided by NMR-derived restraints. The undecamer d(CGAAACTTTCG)(2), where C represents directly opposed alkylated N(4)C-ethyl-N(4)C cytosine bases, serves as model for the cytotoxic cross-links formed by bifunctional alkylating agents used in cancer therapy. The structure of the duplex shows the cross-link protruding into the major groove. An increase in the diameter of the DNA at the pseudoplatform formed by the cross-linked residues creates an A-DNA characteristic hole in the central portion of the DNA. This results in a centrally underwound base step and a number of subsequent overwinding steps leading to an overall axis bend toward the major groove. The structure shows narrowing of both minor and major grooves in the proximity of the cross-link. The perturbation leads to preferential intrastrand base stacking, disruption of adjacent canonical (A.T) base pairing, and buckling of base pairs, the extent of which diminishes with progression away from the lesion site. Overall, the distortion induced by the cross-link spreads over three base pairs on the 5'- and 3'-sides of the cross-link.
通过基于核磁共振(NMR)衍生约束条件指导的分子动力学计算,确定了一种链间交联的自互补寡脱氧核苷酸的溶液结构,该寡脱氧核苷酸含有直接相对的烷基化N(4)C-乙基-N(4)C胞嘧啶碱基。十一聚体d(CGAAACTTTCG)(2)(其中C代表直接相对的烷基化N(4)C-乙基-N(4)C胞嘧啶碱基)作为癌症治疗中使用的双功能烷基化剂形成的细胞毒性交联的模型。双链体结构显示交联突出进入大沟。由交联残基形成的假平台处DNA直径的增加在DNA中心部分产生了一个A-DNA特征性空洞。这导致中心碱基步下旋以及随后一些碱基步上旋,从而使整体轴朝大沟弯曲。该结构显示在交联附近小沟和大沟均变窄。这种扰动导致链内碱基优先堆积、相邻标准(A.T)碱基对的破坏以及碱基对的弯曲,其程度随着远离损伤位点而减小。总体而言,交联诱导的畸变在交联的5'和3'侧扩展到三个碱基对。