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首页> 外文期刊>Journal of the American Chemical Society >Origins of the Distortions in the Base Pair Step Adjacent to Platinum Anticancer Drug-DNA Adducts. Fundamental NMR Solution Studies Utilizing Right-Handed Cross-Link Models Having 5'- and 3'-Flanking Residues
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Origins of the Distortions in the Base Pair Step Adjacent to Platinum Anticancer Drug-DNA Adducts. Fundamental NMR Solution Studies Utilizing Right-Handed Cross-Link Models Having 5'- and 3'-Flanking Residues

机译:碱基对步骤中与铂类抗癌药物-DNA加合物相邻的畸变的起源。利用具有5'和3'侧翼残基的右手交联模型进行基础NMR解决方案研究

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For DNA duplexes, the Lippard laboratory has shown that the XG~* base pair (bp) step has a very unusual slide and shift, where G~* is a G platinated at N7 by di- or monofunctional platinum anticancer drugs. One approach toward understanding the cause of this important unexpected XG~* distortion is to examine single-strand (ss) oligonucleotide (oligo) models. Both duplex and ss XG~*G~* models of the key G~*G~* cross-link formed by cisplatin have the HH1 conformation with head-to-head bases. Cross-links have R canting (3'-G~* H8 atom toward 5'-G~*) in duplexes and L canting (5'-G~* H8 atom toward 3'-G~*) in ss models. However, dynamic motion in solution makes the ss features difficult to define. Thus, we employ less dynamic cross-link models such as (R,S,S,R)-BipPt(d(TG~*G~*)) and (R,S,S,R)-BipPt(d(pG~*G~*TTT)), the first examples of an HH1 conformer with R canting for ss oligos longer than d(GpG) (Bip = 2,2'-bipiperidine). In these, the 5'-T residue decreases R canting (indicating steric clashes with the 5'-G~*) and the less bulky 5'-phosphate group forms a H-bond to HN-Pt (indicating that R canting allows H-bonding). We conclude that the 5'-X residue in duplex adducts changes its position from that in B form DNA to avoid steric clashes with the 5'-G~* and the carrier ligand and secondarily to form a Watson-Crick base pair. These features, possibly aided by weak carrier-ligand H-bonding, lead to the relatively unusual features distinctive to the "Lippard bp step".
机译:对于DNA双链体,Lippard实验室已证明XG〜*碱基对(bp)步骤具有非常不同的滑动和移位,其中G〜*是在N7处被双功能或单功能铂类抗癌药物镀铂的G。了解这种重要的意外XG〜*变形原因的一种方法是检查单链(ss)寡核苷酸(oligo)模型。由顺铂形成的关键G〜* G〜*交联的双链和ss XG〜* G〜*模型均具有与头对头碱基的HH1构象。交联在双链体中具有R倾斜(3'-G〜* H8原子朝向5'-G〜*)和L倾斜(5'-G〜* H8原子朝3'-G〜*)。但是,解决方案中的动态运动使ss功能难以定义。因此,我们采用了较少动态的交叉链接模型,例如(R,S,S,R)-BipPt(d(TG〜* G〜*))和(R,S,S,R)-BipPt(d(pG (* G〜* TTT)),具有R倾斜的ss寡核苷酸长于d(GpG)(Bip = 2,2'-bipiperidine)的HH1构象体的第一个例子。在这些残基中,5'-T残基降低了R倾斜(表明与5'-G〜*发生空间碰撞),而体积较小的5'-磷酸基团与HN-Pt形成了H键(表明R倾斜允许H -键)。我们得出结论,双链体加合物中的5'-X残基从B型DNA的位置改变其位置,以避免与5'-G〜*和载体配体发生空间冲突,其次形成Watson-Crick碱基对。这些特征,可能是由于弱的载体-配体H键辅助,导致了“ Lippard bp step”所特有的相对不寻常的特征。

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  • 来源
    《Journal of the American Chemical Society》 |2009年第34期|12314-12324|共11页
  • 作者单位

    Departments of Chemistry, Louisiana State University, Baton Rouge, Louisiana 70803, and Emory University, Atlanta, Georgia 30322 Department of Microbiology, University of Alabama at Birmingham, 845 19th St. S., Birmingham, AL 35294;

    Dipartimento Farmaco-Chimico, Universita di Bari, Via E. Orabona 4, 70125 Bari, Italy;

    Departments of Chemistry, Louisiana State University, Baton Rouge, Louisiana 70803, and Emory University, Atlanta, Georgia 30322;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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