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Out-of-Shape DNA Minor Groove Binders: Induced Fit Interactions of Heterocyclic Dications with the DNA Minor Groove

机译:形状外的DNA轻微沟槽粘合剂:诱导杂环DNA与DNA轻微凹槽的相互作用

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摘要

DB921 and DB911 are benzimidazole-biphenyl isomers with terminal charged amidines.DB911 has a central meta-substituted phenyl that gives it a shape similar to those of known minor groove binding compounds.DB921 has a central para-substituted phenyl with a linear conformation that lacks the appropriate radius of curvature to match the groove shape.It is thus expected that DB911,but not DB921,should be an effective minor groove binder,but we find that DB921 not only binds in the groove but also has an unusually high binding constant in SPR experiments (2.9 x 10~8 M~(-1),vs 2.1 x 10~7 M~(-1) for DB911).ITC thermodynamic analysis with an AATT sequence shows that the stronger binding of DB921 is due to a more favorable binding enthalpy relative to that of DB911.CD results support minor groove binding for both compounds but do not provide an explanation for the binding of DB921.X-ray crystallographic analysis of DB921 bound to AATT shows that an induced fit structural change in DB921 reduces the twist of the biphenyl to complement the groove,and places the functional groups in position to interact with bases at the floor of the groove.The phenylamidine of DB921 forms indirect contacts with the bases through a bound water.The DB921-water pair forms a curved binding module that matches the shape of the minor groove and provides a number of strong interactions that are not possible with DB911.This result suggests that traditional views of compound curvature required for minor groove complex formation should be reevaluated.
机译:DB921和DB911是苯并咪唑 - Biphenyl异构体,其中末端加入脒.DB911具有中央元取代的苯基,其给予其类似于已知的次槽结合化合物的形状.DB921具有缺乏的线性构象的中央对取代的苯基。适当的曲率半径以匹配凹槽形状。因此预期DB911,但不是DB921应该是有效的较小凹槽粘合剂,但我们发现DB921不仅粘合在凹槽中,而且还具有异常高的结合恒定SPR实验(2.9 x 10〜8 m〜(-1),与DB911的2.1 x 10〜7 m〜(-1))。用AATT序列的热力学分析表明DB921的更强的结合是由于更多相对于DB911.CD结果的有利结合焓支持两种化合物的较小凹槽结合,但不提供与AATT结合的DB921的DB921.x射线结晶分析的结合的结合说明表明DB921中的诱导拟合结构变化减少了联苯的扭曲以补充凹槽,并将官能团放置在凹槽地板上的位置相互作用。DB921的苯脒与碱通过结合的水形成间接触点。DB921-水对形成一个弯曲的绑定模块与次要凹槽的形状匹配,并提供多种与DB911不可能的强的相互作用。该结果表明应重新评估较小凹槽复杂形成所需的复合曲率的传统视图。

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  • 来源
    《Biochemistry》 |2005年第45期|共8页
  • 作者单位

    Department of Chemistry Georgia State University Atlanta Georgia 30303 and Cancer Research UK Biomolecular Structure Group The School of Pharmacy University of London London WC1N 1AX U.K.;

    Department of Chemistry Georgia State University Atlanta Georgia 30303 and Cancer Research UK Biomolecular Structure Group The School of Pharmacy University of London London WC1N 1AX U.K.;

    Department of Chemistry Georgia State University Atlanta Georgia 30303 and Cancer Research UK Biomolecular Structure Group The School of Pharmacy University of London London WC1N 1AX U.K.;

    Department of Chemistry Georgia State University Atlanta Georgia 30303 and Cancer Research UK Biomolecular Structure Group The School of Pharmacy University of London London WC1N 1AX U.K.;

    Department of Chemistry Georgia State University Atlanta Georgia 30303 and Cancer Research UK Biomolecular Structure Group The School of Pharmacy University of London London WC1N 1AX U.K.;

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  • 正文语种 eng
  • 中图分类 生物化学;
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