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DNA binding studies of antitumor antibiotics and antitumor anthracene derivatives: Computer simulations and spectrophotometric titrations.

机译:抗肿瘤抗生素和抗肿瘤蒽衍生物的DNA结合研究:计算机模拟和分光光度滴定。

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摘要

Quinocarcin binds to d(ATGCAT)₂ with a preferred direction of 3' and the R configuration at C4 of the drug. A mode of action involving ring opening of the oxazolidine ring to form an iminium ion which can then alkylate the N2 of guanine has been reinforced by the current computer modeling study. The absolute configuration for quinocarcin should be reversed based on the fact that the optical isomer of the structure arbitrarily assigned in the literature forms a much better binding complex to DNA. Anthramycin binds to the 2-amino group of guanine but its mechanism of action proceeds through a neutral imine. The 3' direction is again favored but for this molecule, the preferred configuration is S. This computer modeling study provided a basis for a 2D NMR study which confirmed that anthramycin forms a 3'S adduct when it binds to d(ATGCAT)₂. Bisantrene and R9 are synthetic anthracene derivatives with antitumor activity. Use of UV spectroscopy provided insight into the ability of these compounds to intercalate between the base pairs of double helical DNA. Standard Scatchard plot analysis proved useless in determining the binding parameters. A McGhee-von Hippel equation was able to describe a portion of the data but a smoothing spline function was able to describe the data completely. Naphthyridinomycin studies indicate that it too prefers a covalent adduct in which the direction is 3' and the configuration is R at C7. When the noncovalent drug binds to d(ATGCAT)₂ it may bind with either the C3a face or the C7 face closest to N2 of guanine. Iminium ion mechanisms have been proposed for the binding of naphthyridinomycin to N2 of guanine in the minor groove of DNA and the computer modeling presents evidence to support such mechanisms. Saframycin A binds much better to d(GATGCATC)₂ as a hydroquinone species but the quinone can still bind in the same site. The 3' direction is clearly preferred with the R configuration at C7. The hydrogen bonding network of the hydroquinone is conserved in the noncovalent, iminium ion, and covalent 3'R models after 32 ps of dynamics. Iminium ion mechanisms have been proposed for the binding of saframycin A to N2 of guanine in the minor groove of DNA and the computer modeling presents evidence to support such mechanisms.
机译:喹卡霉素以优选的3'方向和在药物的C4处的R构型与d(ATGCAT)2结合。当前的计算机模型研究已经增强了一种作用方式,该方式包括使恶唑烷环开环以形成亚胺离子,然后可以使鸟嘌呤的N 2烷基化。基于以下事实,应颠倒喹诺霉素的绝对构型:文献中任意指定的结构的旋光异构体形成了与DNA更好的结合复合物。蒽霉素与鸟嘌呤的2-氨基结合,但其作用机理是通过中性亚胺进行的。 3'方向再次受到支持,但是对于该分子,优选的构型是S。该计算机模型研究为2D NMR研究提供了基础,该研究证实了蒽霉素在与d(ATGCAT)2结合时形成3'S加合物。 Bisantrene和R9是具有抗肿瘤活性的合成蒽衍生物。紫外光谱的使用提供了对这些化合物插入双螺旋DNA碱基对之间的能力的了解。事实证明,标准Scatchard图分析无法确定结合参数。 McGhee-von Hippel方程可以描述部分数据,而平滑样条函数可以完全描述数据。萘啶霉素研究表明,它也更喜欢方向为3',构型为C7的R的共价加合物。当非共价药物与d(ATGCAT)2结合时,它可以与最接近鸟嘌呤N 2的C3a面或C7面结合。已提出亚胺离子机制用于萘啶霉素与DNA小沟中鸟嘌呤N2的结合,计算机建模提供了支持这种机制的证据。 Saframycin A作为对苯二酚种类与d(GATGCATC)2的结合要好得多,但醌仍可以在同一位点结合。对于C7处的R构型,显然首选3'方向。经过32 ps的动态变化后,氢醌的氢键网络在非共价,亚胺离子和共价3'R模型中保持不变。已提出亚胺离子机制用于沙弗霉素A与DNA小沟中鸟嘌呤N2的结合,计算机建模提供了支持这种机制的证据。

著录项

  • 作者

    Hill Gordon Craig.;

  • 作者单位
  • 年度 1990
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  • 原文格式 PDF
  • 正文语种 en
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