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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Relationship among redox potentials, proton dissociation constants of pyrrolic nitrogens, and in vivo and in vitro superoxide dismutating activities of manganese(III) and iron(III) water-soluble porphyrins [Review]
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Relationship among redox potentials, proton dissociation constants of pyrrolic nitrogens, and in vivo and in vitro superoxide dismutating activities of manganese(III) and iron(III) water-soluble porphyrins [Review]

机译:锰(III)和铁(III)水溶性卟啉的氧化还原电势,吡咯氮原子的质子解离常数与体内和体外超氧化物歧化活性之间的关系[综述]

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摘要

The log k(cat) values for the dismutation of O-2(.-) by a series of monohydroxoiron(III) and aquamanganese(III) porphyrins, including ortho, meta, and para isomers of 5,10,15,20-tetrakis(N-alkylpyridiniumyl) were found to vary linearly with the metal-centered redox potentials (E-1/2) for the M(III)/M(II) couple. Each 120 mV increase in E-1/2 imparted a 10-fold increase in k(cat). The observed behavior is in accord with the Marcus equation for outer-sphere electron-transfer reactions, suggesting that the same mechanism is operative for iron and manganese porphyrins. The Marcus plot enabled us to estimate the self-exchange late constants of monohydroxoiron porphyrins to be similar to 1 order of magnitude higher than those of aquamanganese porphyrins. Furthermore, E-1/2 values for all of the metalloporhyrins investigated were linearly related to the acid dissociation constants (pK(a3)) of the pyrrolic nitrogen of the metal-free porphyrins, indicating that either E1/2, or the more readily measured pK(a3), may be useful in predicting SOD activity in vitro. The most potent compounds investigated, with respect to SOD activity, are those of the ortho N-alkylpyridiniumyl series. Ortho N-alkylpyridiniumyl groups are more electron withdrawing than are the meta or para groups, thus imparting a more positive redox potential and a correspondingly higher SOD activity. Sufficiently positive potentials, or sufficiently low pK(a3) values, are necessary for useful SOD activity, but so is the absence of toxicity. Despite their favorable redox potentials and SOD activities, all Fe(III) porphyrins investigated were toxic to Escherichia coli under both aerobic and anaerobic conditions and to both SOD-deficient and SOD-proficient strains. Only the ortho and meta manganese isomers of the N-alkylpyridiniumyl series (Mn-III-TE-2-PyP5+, (MnTM)-T-III-2-PyP5+ and (MnTM)-T-III-3-PyP5+) significantly protected SOD-deficient E. coli and allowed growth in an aerobic minimal medium. In previous work, we established that the lower toxicity of these compounds is due to diminished ability to bind to nucleic acids. The Mn(III) complexes are preferable to the Fe(III) complexes for SOD mimics possibly due to a lower tendency for axial ligation. We propose E-1/2 greater than or equal to +0.05 V vs NHE and/or pK(a3) less than or equal to 2.0 as necessary requirements for Mn porphyrins to be considered useful SOD mimics. [References: 123]
机译:通过一系列一氢氧杂铁(III)和水锰(III)卟啉(包括5,10,15,20-的邻位,间位和对位异构体)使O-2(.-)发生歧化的log k(cat)值发现四(N-烷基吡啶基)对M(III)/ M(II)对随以金属为中心的氧化还原电势(E-1 / 2)线性变化。 E-1 / 2的每增加120 mV,k(cat)的增加10倍。观察到的行为与外球电子转移反应的马库斯方程式一致,表明对于铁和锰卟啉而言,相同的机理起作用。马尔库斯图使我们能够估计单羟基氧杂卟啉的自交换后期常数比水锰卟啉的自交换晚期常数高约1个数量级。此外,所有研究的金属卟啉的E-1 / 2值与无金属卟啉的吡咯氮的酸解离常数(pK(a3))线性相关,表明E1 / 2或更容易测量的pK(a3)可能在体外预测SOD活性中有用。就SOD活性而言,最有效的化合物是邻N-烷基吡啶鎓基系列的那些。邻N-烷基吡啶鎓基的吸电子性比间或对位基更多,因此赋予了更高的正氧化还原电势和相应更高的SOD活性。足够的正电势或足够低的pK(a3)值对于有用的SOD活性是必需的,但也没有毒性。尽管它们具有良好的氧化还原电势和SOD活性,但所研究的所有Fe(III)卟啉在有氧和厌氧条件下均对大肠杆菌以及SOD缺陷型和SOD熟练型菌株均具有毒性。只有N-烷基吡啶鎓基系列(Mn-III-TE-2-PyP5 +,(MnTM)-T-III-2-PyP5 +和(MnTM)-T-III-3-PyP5 +)的邻位和间位锰异构体SOD缺陷型大肠杆菌,可在有氧基本培养基中生长。在以前的工作中,我们确定了这些化合物的较低毒性是由于与核酸结合的能力降低。对于SOD模拟物,Mn(III)配合物优于Fe(III)配合物,这可能是由于轴向连接趋势较低。我们建议将E-1 / 2大于或等于+0.05 V(相对于NHE)和/或pK(a3)小于或等于2.0,作为将锰卟啉视为有用的SOD模拟物的必要要求。 [参考:123]

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