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Structural Perturbations Induced by the a-Anomer of the Aflatoxin B_1 Formamidopyrimidine Adduct in Duplex and Single-Strand DNA

机译:黄曲霉毒素B_1 Formamidopyrimidine加合物的α-异头物在双链和单链DNA中引起的结构扰动

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摘要

The guanine N7 adduct of aflatoxin B_1 exo-8,9-epoxide hydrolyzes to form the formamidopyrimidine (AFB-FAPY) adduct, which interconverts between α and β anomers. The β anomer is highly mutagenic in Escherichia coli, producing G→T transversions; it thermally stabilizes the DNA duplex. The AFB-α-FAPY adduct blocks replication; it destabilizes the DNA duplex. Herein, the structure of the AFB-α-FAPY adduct has been elucidated in 5'-d(C~1T~2A~3T~4X~5A~6T~7T~8C~9A~(10))-3'-5'-d(T~(11)G~(12)A~(13)A~(14)T~(15)C~(16)A~(17)T~(18)A~(19)G~(20))-3' (X = AFB-α-FAPY) using molecular dynamics calculations restrained by NMR-derived distances and torsion angles. The AFB moiety intercalates on the 5' face of the pyrimidine moiety at the damaged nucleotide between base pairs T~4-A~(17) and X~5-C~(16), placing the FAPY C5-N~5 bond in the R-a axial conformation. Large perturbations of the s and ζ backbone torsion angles are observed, and the base stacking register of the duplex is perturbed. The deoxyribose orientation shifts to become parallel to the FAPY base and displaced toward the minor groove. Intrastrand stacking between the AFB moiety and the 5' neighbor thymine remains, but strong interstrand stacking is not observed. A hydrogen bond between the formyl group and the exocyclic amine of the 3'-neighbor adenine stabilizes the E conformation of the formamide moiety. NMR studies reveal a similar 5'-intercalation of the AFB moiety for the AFB-a-FAPY adduct in the tetramer 5'-d(C~1T~2X~3A~4)-3', involving the R_a axial conformation of the FAPY C5-N~5 bond and the E conformation of the formamide moiety. Since in duplex DNA the AFB moiety of the AFB-β-FAPY adduct also intercalates on the 5' side of the pyrimidine moiety at the damaged nucleotide, we conclude that favorable 5'-stacking leads to the R~a conformational preference about the C5-N~5 bond; the same conformational preference about this bond is also observed at the nucleoside and base levels. The structural distortions and the less favorable stacking interactions induced by the AFB-α-FAPY adduct explain its lower stability as compared to the AFB-β-FAPY adduct in duplex DNA. In this DNA sequence, hydrogen bonding between the formyl oxygen and the exocyclic amine of the 3'-neighboring adenine stabilizing the E configuration of the formamide moiety is also observed for the AFB-β-FAPY adduct, and suggests that the identity of the 3'-neighbor nucleotide modulates the stability and biological processing of AFB adducts.
机译:黄曲霉毒素B_1 exo-8,9-环氧的鸟嘌呤N7加合物水解形成甲酰胺基嘧啶(AFB-FAPY)加合物,可在α和β异构体之间相互转化。 β异构体在大肠杆菌中具有高度致突变性,产生G→T转化;它可以热稳定DNA双链体。 AFB-α-FAPY加合物可阻止复制;它破坏了DNA双链体的稳定性。在这里,AFB-α-FAPY加合物的结构已在5'-d(C〜1T〜2A〜3T〜4X〜5A〜6T〜7T〜8C〜9A〜(10))-3'-5中阐明'-d(T〜(11)G〜(12)A〜(13)A〜(14)T〜(15)C〜(16)A〜(17)T〜(18)A〜(19)G 〜(20))-3'(X =AFB-α-FAPY),使用受NMR得出的距离和扭转角限制的分子动力学计算。 AFB部分插入在嘧啶部分5'面上的碱基对T〜4-A〜(17)和X〜5-C〜(16)之间的受损核苷酸上,从而将FAPY C5-N〜5键置于Ra轴向构象。观察到s和ζ主链扭转角的大扰动,并且双链体的基本堆叠寄存器受到扰动。脱氧核糖的取向转变为平行于FAPY基,并朝着小沟移动。在AFB部分和5'邻近胸腺嘧啶之间仍然存在链内堆叠,但是未观察到强烈的链间堆叠。甲酰基和3'-邻腺嘌呤的环外胺之间的氢键稳定甲酰胺部分的E构象。 NMR研究显示四聚体5'-d(C〜1T〜2X〜3A〜4)-3'中AFB-a-FAPY加合物的AFB部分有类似的5'插入,涉及R_a轴向构象。 FAPY C5-N〜5键和甲酰胺部分的E构象。由于在双链DNA中,AFB-β-FAPY加合物的AFB部分也插入在嘧啶部分的5'侧的受损核苷酸上,我们得出结论,有利的5'堆积导致C5的R〜a构象偏爱-N〜5键;在核苷和碱基水平上也观察到关于该键的相同构象偏好。与双链DNA中的AFB-β-FAPY加合物相比,AFB-α-FAPY加合物引起的结构变形和不利的堆积相互作用说明了其较低的稳定性。在该DNA序列中,对于AFB-β-FAPY加合物,还观察到甲酰氧与3'邻位腺嘌呤的环外胺之间的氢键稳定甲酰胺部分的E构型,并暗示了3邻核苷酸调节AFB加合物的稳定性和生物加工。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2009年第44期|16096-16107|共12页
  • 作者单位

    Department of Chemistry, Center in Molecular Toxicology, and the Vanderbilt-Ingram Cancer Center, Vanderbilt University, Nashville, Tennessee 37235;

    Department of Chemistry, Center in Molecular Toxicology, and the Vanderbilt-Ingram Cancer Center, Vanderbilt University, Nashville, Tennessee 37235;

    Department of Chemistry, Center in Molecular Toxicology, and the Vanderbilt-Ingram Cancer Center, Vanderbilt University, Nashville, Tennessee 37235;

    Department of Chemistry, Center in Molecular Toxicology, and the Vanderbilt-Ingram Cancer Center, Vanderbilt University, Nashville, Tennessee 37235;

    Department of Chemistry, Center in Molecular Toxicology, and the Vanderbilt-Ingram Cancer Center, Vanderbilt University, Nashville, Tennessee 37235;

    Department of Chemistry, Center in Molecular Toxicology, and the Vanderbilt-Ingram Cancer Center, Vanderbilt University, Nashville, Tennessee 37235;

  • 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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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:17:26

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