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Biomimetic models of intradiol catechol dioxygenases: Structures and properties of inclusion complexes of iron(III) centered metal complexes with beta-cyclodextrin derivatives.

机译:内二醇儿茶酚双加氧酶的仿生模型:铁(III)为中心的金属络合物与β-环糊精衍生物的包合物的结构和性质。

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摘要

A series of Fe(III)-DHN complexes and inclusion complexes with beta-Cyd(s) were prepared to study the structure and the properties of intradiol catechol dioxygenase in aqueous state. beta-Cyd derivatives are employed as a mimic of a protein scaffold to stabilize the metal complexes.;For understanding the conformation of the metal complex inside of beta-Cyd(s), DHN-beta-Cyd is investigated through UV-Vis, NMR, CD and molecular modeling. Its chemical properties were studied to obtain insight on how the geometric structure and electronic properties correlate with a biological function. The spectroscopic results show the binding mode in which the upper rim of beta-Cyd is mostly involved in binding of the metal complex. The solid state structure of the inclusion complex was investigated using X-ray crystallography and used to compare with the solution state structure.;Model complexes are synthesized and investigated by spectroscopic and other analytical methods to elucidate their thermodynamic and kinetic properties: Fe(III)-DHN complexes encapsulated in a parent beta-Cyd and upper rim modified beta-Cyd(s). The results from spectroscopic and electrochemical analysis suggest that the modified beta-Cyd, DJ-70, stabilizes [Fe(III)NTA(DHN)]2- more than the parent Cyd does and DJ-70 favors the Fe(II) oxidation state whereas the parent beta-Cyd favors the Fe(III) oxidation state. Both Cyd(s) reduce the redox reaction rate.;Kinetic activities of beta-Cyd inclusion complex with [Fe(III)L(DHN)], where L is a ligand with different Lewis basicity, show that Cyd reduces the reaction rate, which indicates that Cyd protects the metal complex from oxidizing agents. The reduction is more apparent in TPA and NTA metal complexes. This fact is possibly related to the stability of the metal complexes inside beta-Cyd. The rate constants of the metal complexes without beta-Cyd follow the trend: the stronger in the Lewis acidity of the metal center, the faster the oxidative degradation rate. Mass spectra of reaction products of NTA and IDA metal complexes show that NTA favors intradiol ring cleavage while IDA favors extradiol ring cleavage.
机译:制备了一系列Fe(III)-DHN配合物和与β-Cyd的包合物,以研究含水状态下的二醇内儿茶酚二加氧酶的结构和性质。 β-Cyd衍生物被用作模拟蛋白质支架来稳定金属配合物。;为了解β-Cyd内部金属配合物的构象,通过UV-Vis,NMR研究了DHN-β-Cyd ,CD和分子建模。研究了其化学性质,以了解其几何结构和电子性质如何与生物学功能相关。光谱结果显示了结合模式,其中β-Cyd的上边缘主要参与金属配合物的结合。用X射线晶体学研究了包合物的固态结构,并与溶液状态结构进行了比较。;通过光谱学和其他分析方法合成并研究了模型络合物,以阐明它们的热力学和动力学性质:Fe(III) -DHN复合物封装在亲本β-Cyd和上边缘修饰的β-Cyd中。光谱和电化学分析的结果表明,改性的β-CydDJ-70比母体Cyd更稳定[Fe(III)NTA(DHN)] 2-,DJ-70有利于Fe(II)氧化态而母体β-Cyd倾向于Fe(III)氧化态。两种Cyd都降低了氧化还原反应的速率。具有[Fe(III)L(DHN)]的β-Cyd包合物的运动活性,其中L是具有不同Lewis碱性的配体,表明Cyd降低了反应速率,这表明Cyd保护金属络合物免受氧化剂的侵害。在TPA和NTA金属络合物中,这种减少更为明显。这一事实可能与β-Cyd内部金属络合物的稳定性有关。没有β-Cyd的金属络合物的速率常数遵循趋势:金属中心的路易斯酸度越强,氧化降解速率越快。 NTA和IDA金属配合物的反应产物的质谱表明,NTA有利于二醇内环的裂解,而IDA有利于二醇外环的裂解。

著录项

  • 作者

    Park, Heaweon.;

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 319 p.
  • 总页数 319
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;
  • 关键词

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