首页> 外文期刊>Biochemistry >The Oxygenase-Peroxidase Theory of Bach and Chodat and Its Modern Equivalents:Change and Permanence in Scientific Thinking as Shown by Our Understanding of the Roles of Water,Peroxide,and Oxygen in the Functioning of Redox Enzymes
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The Oxygenase-Peroxidase Theory of Bach and Chodat and Its Modern Equivalents:Change and Permanence in Scientific Thinking as Shown by Our Understanding of the Roles of Water,Peroxide,and Oxygen in the Functioning of Redox Enzymes

机译:巴赫和霍达特的加氧酶-过氧化物酶理论及其现代等同物:科学思维的变化和持久性,如我们对水,过氧化物和氧在氧化还原酶功能中的作用的理解所表明的

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摘要

Alexander Bach was both revolutionary politician and biochemist.His earliest significant publication,"Tsar-golod"("The Tsar of Hunger"),introduced Marxist thought to Russian workers.In exile for 30 years,he moved to study the dialectic of the oxidases.When his theory of oxidases as combinations of oxygenases and peroxidases was developed(circa 1900)the enzyme concept was not fully formulated,and the enzyme/substrate distinction not yet made.Peroxides however were then and remain now significant intermediates,when either free or bound,in oxidase catalyses.The aerobic dehy-drogenase/peroxidase/catalase coupled systems which were studied slightly later clarified the Bach model and briefly became an oxidase paradigm.Identification of peroxidase as a metalloprotein,a key step in understanding oxidase and peroxidase mechanisms,postdated Bach's major work.Currently we recognize catalytic organic peroxides in fiavoprotein oxygenases;such organic peroxides are also involved in lipid oxidation and tryptophan radical decay.But most physiologically important peroxides are now known to be bound to transition metals(either Fe or Cu)and formed both directly and indirectly(from oxygen).The typical stable metalloprotein peroxide product is the ferryl state.When both peroxide oxidizing equivalents are retained the second equivalent is held as a protein or porphyrin radical.True metal peroxide complexes are unstable.But often water molecules mark the spot where the original peroxide decayed.The cytochrome c oxidase Fe-Cu center can react with either peroxide or oxygen to form the intermediate higher oxidation states P and F.In its resting state water molecules and hydroxyl ions can be seen marking the original location of the oxygen or peroxide molecule.
机译:亚历山大·巴赫(Alexander Bach)既是革命政治家,也是生物化学家。他最早的重要著作“沙皇戈尔德”(“ Tsar of Hunger”)向俄国工人介绍了马克思主义思想。流亡了30年后,他开始研究氧化酶的辩证法。当他提出氧化酶作为加氧酶和过氧化物酶的组合的理论时(大约在1900年),酶的概念还没有完全形成,酶/底物的区分也没有。然而过氧化物一直是现在的重要中间体,无论是游离的还是游离的。稍后稍作研究的好氧脱氢酶/过氧化物酶/过氧化氢酶偶联系统阐明了Bach模型并简要地成为氧化酶范例。过氧化物酶作为金属蛋白的鉴定是理解氧化酶和过氧化物酶机理的关键步骤,推迟了巴赫的主要工作。目前,我们认识到黄素蛋白氧化酶中的催化性有机过氧化物;此类有机过氧化物也参与脂质的氧化。色氨酸自由基的衰变。但是现在已知大多数具有重要生理意义的过氧化物都与过渡金属(Fe或Cu)结合并直接或间接(由氧)形成。典型的稳定金属过氧化物产物是Ferryl状态。氧化等价物保留下来,第二个等价物保留为蛋白质或卟啉自由基。真正的金属过氧化物配合物不稳定,但水分子常常标记出原始过氧化物降解的部位。细胞色素c氧化酶Fe-Cu中心可以与过氧化物或氧形成中间较高的氧化态P和F.在其静止状态下,可以看到水分子和氢氧根离子标志着氧或过氧化物分子的原始位置。

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