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在一个模型合成的23碱基对寡核苷酸DNA双链体中N2G-丝裂霉素C-N2G链间交联的合成与结构表征。

Synthesis and structural characterization of the N2G-mitomycin C-N2G interstrand cross-link in a model synthetic 23 base pair oligonucleotide DNA duplex.

作者信息

Warren A J, Hamilton J W

机构信息

Department of Chemistry, Dartmouth College, Hanover, New Hampshire 03755-3564, USA.

出版信息

Chem Res Toxicol. 1996 Oct-Nov;9(7):1063-71. doi: 10.1021/tx960070c.

Abstract

Mitomycin C (MMC) is a genotoxic cancer chemotherapeutic agent that reacts principally at the N2 position of guanine to form one of two predominant monoadducts, or a G-G interstrand cross-link at CpG sites, or a G-G intrastrand cross-link at GpG sites. Previous studies of MMC adduction have principally used very short duplex oligonucleotides (5-15 bp) or very long native duplex DNAs. We examined the formation and structural features of the MMC CpG interstrand cross-link on a model 23 bp synthetic oligonucleotide duplex having the (upper strand) sequence 5'-ATAAATACGTATTTATTTATAAA-3'. MMC was reacted with the duplex oligonucleotide in the presence of sodium dithionite at ratios of 6 mM dithionite: 1.5 mM MMC:0.03 mM duplex. The yield of cross-link in the reaction was determined to be approximately 4.8% by denaturing gel electrophoresis, which represented approximately 75% of the total bound MMC. The cross-linked DNA was isolated to greater than 97% purity in a single step by high temperature size exclusion column chromatography. Characterization of the purified product confirmed that the complex contained exclusively the N2G-MMC-N2G cross-link at the single central CpG site. CD spectroscopy demonstrated a negative band at approximately 290-320 nm which has previously been shown to be characteristic of the MMC cross-link. The relative intensity of this band compared to those reported for shorter duplexes suggested that the majority of the duplex is in a normal B-DNA helical configuration. Base-specific chemical footprinting techniques also indicated that there were subtle but distinct structural perturbations principally within the central four to six base pairs containing and adjacent to the cross-link.

摘要

丝裂霉素C(MMC)是一种具有基因毒性的癌症化疗药物,它主要在鸟嘌呤的N2位发生反应,形成两种主要单加合物之一,或在CpG位点形成G-G链间交联,或在GpG位点形成G-G链内交联。先前对MMC加合作用的研究主要使用非常短的双链寡核苷酸(5 - 15个碱基对)或非常长的天然双链DNA。我们在一个具有(上链)序列5'-ATAAATACGTATTTATTTATAAA-3'的23个碱基对的合成寡核苷酸双链体模型上研究了MMC CpG链间交联的形成和结构特征。在连二亚硫酸钠存在下,以6 mM连二亚硫酸钠:1.5 mM MMC:0.03 mM双链体的比例使MMC与双链寡核苷酸反应。通过变性凝胶电泳确定反应中交联的产率约为4.8%,这约占总结合MMC的75%。通过高温尺寸排阻柱色谱一步将交联的DNA分离至纯度大于97%。对纯化产物的表征证实该复合物仅在单个中央CpG位点含有N2G-MMC-N2G交联。圆二色光谱显示在约290 - 320 nm处有一个负峰,先前已表明这是MMC交联的特征。与报道的较短双链体相比,该峰的相对强度表明大多数双链体处于正常的B-DNA螺旋构型。碱基特异性化学足迹技术还表明,在包含交联位点及与之相邻的中央四到六个碱基对内主要存在细微但明显的结构扰动。

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