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Synthesis and Characterization of a Model Nickel Superoxide Dismutase Metallopeptide Functionalized for Hydrogen Production.

机译:功能化用于制氢的模型镍超氧化物歧化酶金属肽的合成与表征。

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摘要

Hydrogenases (H2ase) are naturally occuring enzymes that reversibly catalyze the oxidation and production of H2 from protons at low overpotential with very high catalytic activity. As a result these enzymes have gained increased attention over recent years as potential models for technological materials in the industrial production of hydrogen as a stock fuel. Despite the many attempts to replicate the properties of these enzymes synthetically, very few synthetic models have shown catalytic activity comparable to that of the native enzyme. This project seeks to utilize key features from the coordination environment selected by nature for the seemingly unrelated NiSOD (nickel superoxide dismutase) metalloenzyme to produce a biological mimic of [NiFe]H2ase. A metallopeptide consisting of the 12 N-terminal residues from the NiSOD primary sequence, which has been extensively studied by the Shearer group, was used as the basis for constructing this mimic because it is a structurally and mechanistically well-defined system. Careful consideration of the requirements necessary for nickel coordination to the NiSOD apopeptide and the influence of structure on the reactivity of the nickel containing metallopeptide provided a guide for its modification resulting in properties that may be useful in the construction of an H 2ase active metallopeptide. Substitution of the N-terminal histidine residue with the phosphine PTA (1,3,5-triaza-7-phosphatricyclo[3.3.1.1]decane) is proposed to optimize the active site of this enzyme toward H2 production while maintaining redox activity and stability. The synthesis and characterization by nuclear magnetic resonance, electronic absorption and X-ray absorption spectroscopy of this modified maquette are reported herein. It will be shown that this novel metallopeptide [Ni(H2aseM1)] contains NiII in square pyramidal environment with ligands derived from the PTA (P atom), Cys(2) and Cys(6) (S atoms), the Cys(2) amidate (N atom) and water (H2O). Further studies of this system will be aimed at understanding the functional properties of the metallopeptide as a hydrogenase.
机译:氢酶(H2ase)是天然存在的酶,可在低超电势下以极高的催化活性可逆地催化质子氧化和产生H2。结果,近年来,作为工业原料氢气生产中技术材料的潜在模型,这些酶已引起越来越多的关注。尽管进行了许多尝试以合成方式复制这些酶的性质的尝试,但很少有合成模型显示出与天然酶相当的催化活性。该项目旨在利用自然界中选择的协调环境中的关键特征,利用看似无关的NiSOD(镍超氧化物歧化酶)金属酶来产生[NiFe] H2ase的生物模拟物。由Shearer组广泛研究的由NiSOD一级序列的12个N末端残基组成的金属肽被用作构建该模拟物的基础,因为它在结构和机理上都是明确定义的系统。仔细考虑镍与NiSOD肽的配位所必需的要求以及结构对含镍金属肽的反应性的影响为其改性提供了指导,以使其产生可用于构建H 2ase活性金属肽的性质。提出用膦PTA(1,3,5-triaza-7-phosphatricyclocyclo [3.3.1.1] decane)取代N端组氨酸残基,以优化该酶的活性位点,使其产生H2,同时保持氧化还原活性和稳定性。本文报道了该修饰的模型的通过核磁共振,电子吸收和X射线吸收光谱法的合成和表征。结果表明,这种新型金属肽[Ni(H2aseM1)]在方锥环境中包含NiII,其配体衍生自PTA(P原子),Cys(2)和Cys(6)(S原子),Cys(2)酰胺化物(N原子)和水(H2O)。该系统的进一步研究将旨在理解金属肽作为氢化酶的功能特性。

著录项

  • 作者

    Meade, Bevan Griffith.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Chemistry Biochemistry.;Chemistry General.
  • 学位 M.S.
  • 年度 2014
  • 页码 71 p.
  • 总页数 71
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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