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首页> 外文期刊>Journal of the American Chemical Society >Switching between Inner- and Outer-Sphere PCET Mechanisms of Small-Molecule Activation: Superoxide Dismutation and Oxygen/ Superoxide Reduction Reactivity Deriving from the Same Manganese Complex
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Switching between Inner- and Outer-Sphere PCET Mechanisms of Small-Molecule Activation: Superoxide Dismutation and Oxygen/ Superoxide Reduction Reactivity Deriving from the Same Manganese Complex

机译:内外小分子活化PCET机制之间的转换:来自同一锰配合物的超氧化物歧化和氧/超氧化物还原反应性

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摘要

Readily exchangeable water molecules are commonly found in the active sites of oxidoreductases, yet the overwhelming majority of studies on small-molecule mimics of these enzymes entirely ignores the contribution of water to the reactivity. Studies of how these enzymes can continue to function in spite of the presence of highly oxidizing species are likewise limited. The mononuclear Mn~(Ⅱ) complex with the potentially hexadentate ligand N-(2-hydroxy-5-methylbenzyl)-N,N,N'-tris(2-yridinylmethyl)-l,2-ethanediamm (L~(OH)) was previously found to act as both a H_2O_2-responsive MRI contrast agent and a mimic of superoxide dismutase (SOD). Here, we studied this complex in aqueous solutions at different pH values in order to determine its (i) acid-base equilibria, (ii) coordination equilibria, (iii) substitution lability and operative mechanisms for water exchange, (iv) redox behavior and ability to participate in proton-coupled electron transfer (PCET) reactions, (v) SOD activity and reductive activity toward both oxygen and superoxide, and (vi) mechanism for its transformation into the binuclear Mn~(Ⅱ) complex with ~(Ⅱ)OL-L~(OH) and its hydroxylated derivatives. The conclusions drawn from potentiometric titrations, low-temperature mass spectrometry, temperature- and pressure-dependent ~(17)O NMR spectroscopy, electrochemistry, stopped-flow kinetic analyses, and EPR measurements were supported by the structural characterization and quantum chemical analysis of proposed intermediate species. These comprehensive studies enabled us to determine how transiently bound water molecules impact the rate and mechanism of SOD catdysis. Metal-bound water molecules facilitate the PCET necessary for outer-sphere SOD activity. The absence of the water ligand, conversely, enables the inner-sphere reduction of both superoxide and dioxygen. The L~(OH) complex maintains its SOD activity in the presence of ·OH and Mn~(Ⅳ)-oxo species by channeling these oxidants toward the synthesis of a functionally equivalent binuclear Mn~(Ⅱ) species.
机译:易于交换的水分子通常存在于氧化还原酶的活性位点,但是绝大多数有关这些酶的小分子模拟物的研究完全忽略了水对反应性的影响。尽管存在高度氧化的物种,但对这些酶如何继续发挥作用的研究也受到限制。单核Mn〜(Ⅱ)与潜在的六齿配体N-(2-羟基-5-甲基苄基)-N,N,N'-三(2-吡啶基甲基)-1,2-乙二胺(L〜(OH) )先前被发现既可作为H_2O_2响应的MRI造影剂,又可作为超氧化物歧化酶(SOD)的模拟物。在这里,我们研究了该络合物在不同pH值下的水溶液中,以确定其(i)酸碱平衡,(ii)配位平衡,(iii)取代稳定性和水交换的操作机制,(iv)氧化还原行为和参与质子偶联电子转移(PCET)反应的能力,(v)对氧气和超氧化物的SOD活性和还原活性,以及​​(vi)转化为具有〜(Ⅱ)的双核Mn〜(Ⅱ)配合物的机理OL-L〜(OH)及其羟基化衍生物。从电位滴定,低温质谱,温度和压力依赖性〜(17)O NMR光谱,电化学,停流动力学分析和EPR测量得出的结论得到了拟议化合物的结构表征和量子化学分析的支持中间物种。这些全面的研究使我们能够确定瞬时结合的水分子如何影响SOD催化速率和机理。与金属结合的水分子促进外球超氧化物歧化酶活性所必需的PCET。相反,不存在水配体使得超氧化物和双氧的内部球体还原。 L〜(OH)络合物在·OH和Mn〜(Ⅳ)-氧代物质存在下,通过将这些氧化剂引向功能上等效的双核Mn〜(Ⅱ)物质的合成而保持其SOD活性。

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  • 来源
    《Journal of the American Chemical Society》 |2017年第4期|1472-1484|共13页
  • 作者单位

    Department of Chemistry and Pharmacy, University Erlangen-Nuremberg, 91058 Erlangen, Germany;

    Department of Chemistry and Pharmacy, University Erlangen-Nuremberg, 91058 Erlangen, Germany;

    Department of Chemistry and Pharmacy, University Erlangen-Nuremberg, 91058 Erlangen, Germany;

    Department of Chemistry and Pharmacy, University Erlangen-Nuremberg, 91058 Erlangen, Germany;

    Department of Chemistry and Pharmacy, University Erlangen-Nuremberg, 91058 Erlangen, Germany;

    Department of Chemistry and Pharmacy, University Erlangen-Nuremberg, 91058 Erlangen, Germany;

    Department of Chemistry and Pharmacy, University Erlangen-Nuremberg, 91058 Erlangen, Germany;

    Department of Chemistry and Biochemistry, Auburn University, Auburn, Alabama 36849, United States;

    Department of Chemistry and Pharmacy, University Erlangen-Nuremberg, 91058 Erlangen, Germany;

    Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523-1872, United States;

    Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523-1872, United States;

    Department of Chemistry and Biochemistry, Auburn University, Auburn, Alabama 36849, United States;

    Department of Chemistry and Pharmacy, University Erlangen-Nuremberg, 91058 Erlangen, Germany;

  • 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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